<?xml version="1.0"?>
<rss version="2.0"
  xmlns:dc="http://purl.org/dc/elements/1.1/"
  xmlns:sy="http://purl.org/rss/1.0/modules/syndication/"
  xmlns:admin="http://webns.net/mvcb/"
  xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#"
  xmlns:content="http://purl.org/rss/1.0/modules/content/">

  <channel>
        <title>Custom Feed &#45; The BioLogos Forum</title>
    <link>http://biologos.org/resources/find/Blog/sort&#45;by&#45;Newest/sort&#45;by&#45;Newest/Adam_ the Fall_ and Sin,Evolution &#45; How It Works?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
    <description>This is a custom feed of BioLogos resources. Make a new feed at http://biologos.org/resources/find</description>
    <dc:language>en</dc:language>
    <dc:rights>Copyright 2013</dc:rights>
    <dc:date>2013-06-19T04:47:29-08:00</dc:date>    
    
    

            
            
        
      <item>
        <title>Series: Evolution Basics</title>
        <link>http://biologos.org/blog/series/evolution&#45;basics?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/series/evolution&#45;basics?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>Written by BioLogos Fellow of Biology Dennis Venema, this series of posts is intended as a basic introduction to the science of evolution for non&#45;specialists.</description>
        <content:encoded><![CDATA[<p>Regular readers of the BioLogos Forum will know that over the past few years I have written extensively on various evidences for evolution, often with a focus on genetics evidence. Other posts have focused on scientific arguments put forward from groups such as the Intelligent Design Movement (IDM), or the Old Earth Creationist organization <em>Reasons to Believe</em> (RTB), with a view to showing why I find those arguments unpersuasive. Often these articles are deeply technical—to the point where my friends (perhaps on Facebook, perhaps in a conversation over coffee in the church foyer on Sunday) would comment that, as interesting as it looked, it was just over their heads. Now, these friends are intelligent people, and some are even interested in evolution—but they’re not folks who read extensively on the topic. Nor do they follow the IDM or RTB—they’re just average folks who would like to learn more, but need to start at the beginning and work up slowly – not jump in halfway through, with technical terms and jargon flying around. They need a <em>context</em> for the discussion. They need to explore the basics, &nbsp;first, before building on that understanding to explore the finer details.</p>

<p>So, I’ve decided to try a slightly different approach for the next while—one that has these sorts of folks in mind. From time to time, you can still expect those more in-depth, technical articles, or perhaps a discussion of some new research that makes the popular press, or even an analysis of some new argument from the IDM or RTB. These will be breaks from the new routine, however. For the most part, we’re going to stick to the basics, much like you would if you took an introductory evolution course at a university. Don’t worry, though: this course doesn’t have any prerequisites! All that’s needed is a willingness to learn.</p>

<h3>What you can expect</h3>

<p>The goal of this course is straightforward: to provide evangelical Christians with a step-by-step introduction to the science of evolutionary biology.&nbsp; This will provide benefits beyond just the joy of learning more about God’s wonderful creation. An understanding of the basic science of evolution is of great benefit for reflecting on its theological implications, since this reflection can then be done from a scientifically-informed perspective. From time to time we might comment briefly on some issues of theological interest (and suggest resources for those looking to explore those issues further), but for the most part, we’re going to focus on the science. For folks interested in the interaction between science and Christianity, I heartily recommend <a href="http://biologos.org/blog/science-and-bible">Ted Davis’ recent series</a> as a fabulous introduction to the topic.</p>

<p>You can also expect a slow, patient pace. Since this course is intended for folks with little or no background in biology, we’re going to take our time to make sure no one gets left behind. This might be frustrating to folks who already know a fair bit about evolution. Hopefully even more knowledgeable readers will learn some new and interesting details along the way—but the goal will primarily be to help folks who are less well versed in evolution increase their understanding.</p>

<p>You can also expect a survey of many different areas that have some bearing on evolution. We’ll examine geology, paleontology, biogeography, genetics, and a host of other topics in order to provide a “big picture” overview. This broad-brush approach means that any given individual post will not necessarily be “convincing” to folks who have doubts about evolution. Think about assembling a large jigsaw puzzle: placing any individual piece, on its own, doesn’t convincingly demonstrate what the overall picture will show. This course will be like that. Each topic we cover will put a few pieces in place here and there, slowly building towards the final overall picture.</p>

<p>Since evolution is an active science, this process will also highlight where there are “missing pieces” that are still being sought by scientists. All of this is well and good, since the purpose of this course is not so much to <em>convince</em> anyone of the validity of evolutionary theory, but rather to <em>inform</em> readers about the nature and scope of evolution as a scientific theory in the present day. My goal is to provide readers with a basic understanding of what evolution is and how it works. Given that as the primary goal, if one finds the scope of the evidence ultimately convincing (or not) is somewhat beside the point. The intent here is to provide readers with information they can use to make their own, informed decision.</p>

<h3>How you can help</h3>

<p>First and foremost, you can help by spreading the word about this series to folks you think would be interested in learning more about evolution in a non-threatening environment. Secondly, you can help me by asking questions in the comments. One of the challenges of being a specialist is having the ability to put oneself in the shoes of someone just starting out. What might seem obvious to me may not seem obvious to you, and I hope you’ll feel that no question is too basic or too simplistic. If you’re wondering about something, it’s almost guaranteed that other folks are, too! So, please don’t be shy. I’ll do my best to answer questions in the comments, though I hope that some of our more skilled commenters will (respectfully!) help out here, as well. Finally, you can help by letting me know what broader areas of evolution you find confusing. I have my own ideas about what areas of evolution are commonly misunderstood, but I’d love to hear from readers about what areas they find difficult to understand. I’ll use this input to shape the topics I will cover as we go forward.</p>

<h3>Getting started</h3>

<p>In the next post in this course, we’ll dive into the course content by introducing two key areas: how scientific theories work in general, and how evolution in particular works as the current organizing theory of modern biology.&nbsp;</p>
]]></content:encoded>
        <pubDate>Thu, 04 Apr 13 08:00:08 -0700</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Apr 04, 2013 08:00</dc:date>-->
      </item>
            <item>
        <title>Evolution and Immunity: Same Story?</title>
        <link>http://biologos.org/blog/evolution&#45;and&#45;immunity&#45;same&#45;story?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/evolution&#45;and&#45;immunity&#45;same&#45;story?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>The evidence suggests that God has chosen to work through a random process, one which involves the routine creation and destruction of millions of cells that never get used. This is the ordinary means by which God maintains our health. The miracles of healing recorded in the Bible are miraculous precisely because they don’t occur by this normal, natural process.</description>
        <content:encoded><![CDATA[<p>I’ve had ample opportunity this week to reflect on God’s goodness in providing me a working immune system; I’m nearing the end (hopefully) of a bad cold. Normally I would bewail the havoc caused by the virus itself, but after writing my last <a href="http://biologos.org/blog/adaptive-immunity-how-randomness-comes-to-the-rescue/">post</a> on how antibody diversity is generated, I have become increasingly grateful for this life-protecting process.</p>

<h3>Antibody fine-tuning</h3>

<p>At this moment, millions of B cells are patrolling my spleen and lymph nodes, each sporting a different antibody on its surface. If a foreign molecule from the cold virus happens to stick to an antibody on a particular B cell, the cell can get “activated.”</p>

<p>Pathogens are like cockroaches. If you see one roach, you can bet there are many more lurking under cupboards and between walls. Just as one shoe won’t kill them all, one B cell can’t make enough antibodies to deal with an infection. Activation causes the B cell to reproduce, creating more and more B cells that can produce the same kind of antibody.</p>

<p>As is typical during cell division, most of the DNA in dividing B cells is copied with extremely high accuracy. But in the gene segments coding for the variable region of the antibody, mutations accumulate about a million times more often than normal. Why would this be? Isn’t the point of B cell replication to make more identical antibodies?</p>

<p>Almost. It turns out that these frequent random mutations contribute to optimize the antibody. A shopping story helps to illustrate. I was recently at the mall and found a fabulous pair of shoes on sale. Sadly they were out of my size, but it was such a good sale that I decided to buy the half-size down, figuring the shoes might stretch out a little and grow more comfortable with time. Bad idea! That great bargain turned out to be pretty expensive when I got blisters and never wore the shoes again. Clearly this was not an optimized choice.</p>

<p>Just because you can get your foot into a shoe does not mean it fits. Likewise, just because an antibody binds to an antigen does not mean the two are perfectly complementary. Descendents of the activated B cell have a mechanism to induce mutations so each one can make a slightly different version of the antibody. If one of the resulting B cells makes a better-fitting antibody than its kin, it will have a selective advantage and proliferate. The other cells will not become activated as often and will end up dying by apoptosis, a kind of cellular suicide. This mechanism of mutation and selection, called affinity maturation, produces a highly specific, strong interaction between the antigen and the antibody.</p>

<h3>Antibody production and evolution both involve mutation and selection</h3>

<p>I believe God is sovereign over all of creation, but I don’t imagine he is presently curing my cold by <em>directly controlling</em> the specific gene rearrangements and optimizing mutations in each of the millions of B cells in my body. Could he do so? Of course! But if that were the case, why bother making billions of antibodies in the first place? The evidence suggests that God has chosen to work through a random process, one which involves the routine creation and destruction of millions of cells that never get used. This is the ordinary means by which God maintains our health. The miracles of healing recorded in the Bible are miraculous precisely because they don’t occur by this normal, natural process.</p>

<p>In my last post, I stated that the generation of antibody diversity is an example in which God uses a “blind” system to sustain and preserve life. I then suggested a link to evolution by asking, “If God uses natural mechanisms that work over short time scales (less than a week) to evolve life-giving solutions to disease, could he also use a similarly elegant approach to create life over long periods of time?”</p>

<p>Some may argue that a small-scale process like antibody production isn’t comparable to the processes of mutation and natural selection that are supposed to have caused macro-evolution. Intelligent Design proponent Michael Behe, for example, accepts that all creatures (including humans) have a common ancestor, but he believes random mutations are not powerful enough to have brought about the diversity of life we see today. He argues that there is an “edge” of evolution: mutation can bring about drug resistance and other small-scale adaptations, but beyond a certain point it can’t really produce anything new.</p>

<p>Clearly, antibody production creates something new: the random recombining of whole gene segments generates highly specific, never-before-seen protein functionality within just a few days. The body can respond to <em>any</em> foreign entity, simply by sorting through billions of ready-made possibilities. Furthermore, a pretty-good solution can be made even better by generating many variations on a theme and sorting through these for the optimal antibody.</p>

<p><em>Evolution works by the same kinds of mechanisms</em>, except the mutations occur in germ cells (which give rise to egg and sperm) rather than in B cells, and the sorting (selection) process occurs at the population level rather than the cellular level.</p>

<h3>Though often neutral or destructive, mutations sometimes create new functionality</h3>

<p>Most people are familiar with point mutations, in which a single DNA “letter,” or base, gets changed. However, mutations come in several other varieties. Short sequences of DNA can be inserted or deleted at random. Chunks of DNA can get cut out and inserted in the opposite direction. Individual genes or even whole chromosomes can get lost or duplicated. In rare cases, the entire genome can get duplicated!</p>

<p>The effect of a mutation principally depends on where it occurs, not on the size of the DNA segment affected. A large deletion occurring within a long stretch between two genes may do nothing at all. On the other hand, a single point mutation within a critical gene may cause a devastating disease. There is also a third possibility though: new functionality may emerge as a result of a mutation.</p>

<p><img class="mt-image-right" src="http://biologos.org/uploads/static-content/mutation_image.jpg" style="margin: 0pt 0pt 20px 20px; float: right;" />Let’s consider the protein hemoglobin, for example, which binds oxygen and transports it throughout the body in the blood. Hemoglobin is made from two pairs each of two amino acid chains, called α and β (blue and red in the figure at right). The corresponding genes that code for α and β have similar sequences to each other, and are believed to have arisen when an ancestral globin gene (still present in marine worms, insects, and some fish) duplicated and slowly changed over time. While the ancestral form can bind oxygen just fine, the four chains of hemoglobin cooperate to do so even better.</p>

<p>Both the α and β genes have undergone further duplications followed by smaller mutations. As expected, many of the resulting genes have become irreparably damaged by mutations, but they continue to exist in the genome as inert DNA “fossils.” Others, however, remain active and now perform specialized functions. For instance, one set of β genes binds more tightly to oxygen than the others; it becomes active only during development to ensure that the fetus gets enough oxygen from the mother’s bloodstream. A few months after birth, fetal hemoglobin turns off and the adult form turns on.</p>

<p>To summarize, mutations come in many forms (e.g. rearrangements, insertions, deletions, duplications) and can lead to good, bad, or neutral effects within an individual. B cells depend on random mutations to produce novel antibodies. A few are productive, but the vast majority of B cells die unused. Yet the entire process works for our good! In the same way, mutations in germ cells can lead to no effect, disease, or new and better solutions, as we saw in the hemoglobin example. These are the ordinary (but masterful!) means by which God creates and sustains life.</p>

<p><strong>Editor's Note:</strong> For more on the evolution of the immune system, read Randy's Isaac's post <a href="http://www.asa3online.org/Book/2010/02/16/" target="_blank">"Complex Specified Information Without an Intelligent Source"</a> at the ASA website.</p>
]]></content:encoded>
        <pubDate>Sat, 23 Mar 13 06:00:44 -0700</pubDate>
        <dc:creator>Kathryn Applegate</dc:creator>
        <!--<dc:date>Mar 23, 2013 06:00</dc:date>-->
      </item>
            <item>
        <title>A Scientific Commentary on Genesis 7:11</title>
        <link>http://biologos.org/blog/a&#45;scientific&#45;commentary&#45;on&#45;genesis&#45;711?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/a&#45;scientific&#45;commentary&#45;on&#45;genesis&#45;711?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>Although committed to the principle of sola Scriptura, Calvin recognized that the Bible would have been written in terms its original recipients would have understood. Calvin inherited the medieval cosmology of his time, a way of viewing the world heavily influenced by Greek thought and one which was about to receive shocks from astronomers such as Copernicus and Galileo. But not just yet.</description>
        <content:encoded><![CDATA[<p><strong>Genesis 7:11</strong>: In the six hundredth year of Noah's life, in the second month, on the seventeenth day of the month, on that day all the fountains of the great deep burst forth, and the windows of the heavens were opened.</p>

<p><strong>Genesis 8:1</strong>: But God remembered Noah and all the wild animals and all the domestic animals that were with him in the ark. And God made a wind blow over the earth, and the waters subsided; 2 the fountains of the deep and the windows of the heavens were closed, the rain from the heavens was restrained, 3 and the waters gradually receded from the earth.</p>

<hr />

<p>The Flood narrative of Genesis 7-9 has played a prominent role in science and religion debates for over three hundred years and gave rise in earlier centuries to geological theories such as old earth catastrophism. While literary studies have uncovered the chiastic structure of the Flood story (see Gordon Wenham, “The Coherence of the Flood Narrative” Vetus Testamentum 28 (1978):336-48) and with it the theological pivot point of the entire narrative (Gen. 8:1 – “And God remembered Noah…), much of the popular attention remains on the questions regarding details (Is there THAT much water in the world to cover ALL the mountains to a depth of 15 cubits? Could you really fit two or seven of every animal species in an ark that size?) </p>

<p>Looking at a smaller matter, we find at the beginning and the middle of the narrative indications of an ancient Near Eastern worldview. As the story is told, the flood was not merely the result of excessive rain, but actually the convergence of the waters above the earth with the waters below the earth. It is, as one translation puts it, as if the sluice gates at the deep and of the heavens were thrown open and water poured in from above and below. This is a consistent picture from the Old Testament of a three-tiered universe—a dome above the earth holding back the heavenly waters, a flat earth with water on its surface, and water under an earth which is held up by pillars. </p>

<p>That the story is told using the cosmology of its time should not be unduly unsettling, nor that the story is reinterpreted as new understandings of the universe come into favor. By way of example, consider John Calvin and his understanding of the structure of the universe. Although committed to the principle of sola Scriptura, Calvin recognized that the Bible would have been written in terms its original recipients would have understood.   </p>

<p>Calvin inherited the medieval cosmology of his time, a way of viewing the world heavily influenced by Greek thought and one which was about to receive shocks from astronomers such as Copernicus and Galileo. But not just yet. Calvin still subscribed to the common conception of his day in which the four elements—earth, air, fire, and water—comprised the earthly sphere and possessed unique characteristics. The nature of air and fire was to rise, while the nature of earth and water is to sink.  Earth, being heavier than water, should sink to the center of the cosmos and water should compose the next layer. Both earth and water are spherical, i.e., naturally form spherically around the cosmic center. Thus the heavier spherical element of earth should be encased entirely within the lighter spherical element of water.</p>

<p>Notice what this does to the flood story. For Calvin, the amazing thing is that the world isn’t constantly under water and subject to flooding. In the cosmology of Calvin’s day, it does not take an act of God to cause a universal flood, but rather an actively present and restraining hand of God to keep the waters back in everyday circumstances and make inundation by water something other than universal. </p>

<p>Obviously, Calvin was wrong. Or perhaps we should say that medieval cosmology was flawed and justifiably gave way to new conceptions of the universe. The answer is not to return to an ancient Near Eastern cosmology, but to reinterpret cautiously within new and better cosmologies and to pay closest attention to the text and the theology of scripture.  </p>

<p>The geological and planetary sciences bring their own unique contributions and are of more interest than the latest expedition to discover the ark on Mt. Ararat. Is the flood story a universalization of a catastrophic regional event that burned itself into the psyche of ancient cultures in the Mediterranean basin? Various theories regarding a Black Sea venue for a catastrophic flood event are still in process of being sorted out. It’s intriguing. Or the question where the water on Planet Earth comes from? Was it always here as an emanation of vapors from the earth’s crust in its early formation, or has it accumulated over eons through the steady bombardment of earth by small, icy comets? It’s an intriguing scientific question that is in the midst of determination through testing.</p>

<h3>Preaching Suggestions</h3>

<p>When preaching on the story of the Flood, it is easy to get lost in the debates over particulars. As mentioned elsewhere, to tackle all the peripheral issues threatens to turn a sermon into a geology lecture. Other settings are better suited to addressing those questions, and those are best addressed open-endedly. </p>

<p>A brief explanation of ancient Near Eastern cosmology can be helpful to contextualize the story. If there are those who are tempted to think that a cosmology embedded in the Bible must be inspired and definitive, one can note that cosmology has changed by the New Testament. The Bible itself isn’t wed to a particular structure of the universe. </p>

<p>What is important is to keep the theology of the text front and center, and in that theology there are at least three non-negotiables from the flood narrative. First, human sin and violence threatens to undo a good creation (the flood is a de-creation event, a return of the waters mentioned in Genesis 1:2). Second, God remembers Noah, and never forgets his promises. Third, the end of the flood is a covenant with the whole earth regarding the stability and endurance of the natural order.
</p>]]></content:encoded>
        <pubDate>Tue, 05 Feb 13 08:00:43 -0800</pubDate>
        <dc:creator>Rolf Bouma</dc:creator>
        <!--<dc:date>Feb 05, 2013 08:00</dc:date>-->
      </item>
            <item>
        <title>Surprised by Jack, Part 3: Mere Depravity</title>
        <link>http://biologos.org/blog/surprised&#45;by&#45;jack&#45;part&#45;3&#45;mere&#45;depravity?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/surprised&#45;by&#45;jack&#45;part&#45;3&#45;mere&#45;depravity?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>“Man is now a horror to God and to himself and a creature ill&#45;adapted to the universe not because God made him so but because he has made himself so by the abuse of his free will.  To my mind this is the sole function of the doctrine [of the Fall].”—C.S. Lewis</description>
        <content:encoded><![CDATA[<p>In his lengthiest treatment of the Christian doctrine of the Fall—the fifth chapter of his book <em>The Problem of Pain</em>—Lewis makes it quite clear that he takes the Eden story, as he takes the first chapter of Genesis, to be sacred “mythology.”  It is worthy of reverence, contemplation, theological reflection, even, in a sense, belief, but is not, in his estimation, strictly historical.  Genesis 2-3 narrates deep truths about <em>the human condition</em> but not necessarily <em>historical facts</em> about the first humans:</p>

<blockquote>The story in Genesis is a story (full of the deepest suggestion) about a magic apple of knowledge; but in the developed doctrine [of the Fall] the inherent magic apple has quite dropped out of sight, and the story is simply one of disobedience.  I have the deepest respect even for Pagan myths, <strong>still more for myths in Holy Scripture</strong>. I therefore do not doubt that <strong>the version</strong> which emphasises the magic apple, and brings together the trees of life and knowledge, contains a deeper and subtler truth than the version which makes the apple simply and solely a pledge of obedience.  But I assume that the Holy Spirit would not have allowed the latter to grow up in the Church and win the assent of great doctors unless it also was true and useful so far as it went.  It is this version which I am going to discuss, because, though I suspect <strong>the primitive version</strong> to be far more profound, I know that I, at any rate, cannot penetrate its profundities.<sup>1</sup></blockquote>

<p>Whatever its theological profundities, though, Lewis is clear that Genesis 2-3 is probably not a straightforward narrative of historical events.  “What exactly happened when Man fell, <em>we do not know</em>,” he later writes.  “We have no idea in what particular act, or series of acts, the self-contradictory, impossible wish [to be our own masters] found expression.  For all I can see, it <em>might</em> have concerned the literal eating of a fruit, <em>but the question is of no consequence</em>.”<sup>2</sup></p>

<p>What, then, <em>is</em> of consequence for Lewis, we might ask?  The real story of the Fall, says Lewis, is not the surface narrative about “the magic apple,” but rather what he refers to as “the developed doctrine” of the Fall, namely the doctrine of humankind’s depraved condition:</p>

<blockquote>According to [the doctrine of the Fall], man is now a horror to God and to himself and a creature ill-adapted to the universe not because God made him so but because he has made himself so by the abuse of his free will.  To my mind <strong>this is the sole function of the doctrine</strong>.<sup>3</sup></blockquote>

<p>The “sole function of the doctrine” for Lewis is to name the human condition for what it is, namely, shot through with corruption.  Or, as Lewis put it in <em>A Preface to “Paradise Lost,”</em> “The Fall is simply and solely Disobedience—doing what you have been told not to do: and it results from Pride—from being too big for your boots, forgetting your place, thinking that you are God.”   You might call this the “Mere Depravity” view of the Fall.  </p>

<p>Throughout <em>The Problem of Pain Lewis</em> displays a remarkable degree of comfort with evolutionary theory, not least evolutionary accounts of human origins.  A corollary of Lewis’s acceptance of evolutionary theory, of course, is that death pre-existed humanity.  Lewis grasps this nettle in chapter IX of the book when he writes,</p>

<blockquote>The origin of animal suffering could be traced, by earlier generations, to the Fall of man—the whole world was infected by the uncreated rebellion of Adam.  This is now impossible, for we have good reason to believe that animals existed long before men.  Carnivorousness, with all that it entails, is older than humanity.<sup>5</sup></blockquote>

<p>Here is not the place to go into Lewis’s postulation that Satan was responsible for animal predation.  We need only note that he makes this suggestion precisely in order to show how a broadly Darwinian picture of natural history may be compatible with a broadly Christian view of the world.  For some, severing the link between the Fall of man and death’s entry into the world, is anathema.  But given Lewis’ mere depravity view of the Fall, this evolutionary understanding of natural history creates no real problem for Christian faith.</p>

<p>Moreover, for Lewis the evolutionary picture of the ascent of humankind presents no real objection to the Christian doctrine of the Fall, either:</p>

<blockquote>Many people think that this proposition [that we are fallen creatures] has been proved false by modern science.  “We now know,” it is said, “that so far from having fallen out of a primeval state of virtue and happiness, men have slowly risen from brutality and savagery.”  There seems to me to be a complete confusion here….  If by saying that man rose from brutality you mean simply that man is physically descended from animals, <strong>I have no objection</strong>.  But it does not follow that the further back you go the more brutal–<strong>in the sense of wicked or wretched</strong>–you will find man to be.<sup>6</sup></blockquote>

<p>Lewis goes on to note that the categories of virtue and vice simply do not apply to the animal kingdom–and therefore not to our pre-human ancestors either–because animals as such are not moral agents. Moreover, Prehistoric man is not to be presumed to be altogether reprobate simply on account of using only rudimentary tools, hunting and gathering, and the like.  Primitivity ought not to be confused with sinfulness he argues.  Thus, for Lewis, the discoveries of modern paleontology and archaeology can tell us nothing about when or whether our ancestors fell from a state of innocence, and so we are free to accept, as Lewis seems to have, man’s physical descent from animals without giving up the Christian doctrine of the Fall.</p>

<p>While Lewis may not have publically argued for the historicity of Adam and Eve, his private opinions might have been another matter. In his recent essay “Darwin in the Dock,” John G. West has argued that, regardless of what he said in print, Lewis <em>privately</em> “embraced the literal existence of Adam and Eve.”<sup>7</sup> West chiefly bases his argument for Lewis’s private belief in a literal Adam and Eve on an anecdote involving one of Lewis’ Oxford colleagues, Helen Gardner, recounted in A.N. Wilson’s <em>C.S. Lewis: A Biography</em>.<sup>8</sup> Upon being asked at a dinner party whom he would most like to meet after death, Lewis replied, “Oh, I have no difficulty in deciding…. I want to meet Adam.”  Gardner, it is reported, replied by saying that “if there really were, historically, someone whom we could name as ‘the first man’, he would be a Neanderthal ape-like figure, whose conversation she could not conceive of finding interesting.”<sup>9</sup> Lewis, we are told, gruffly responded, “I see we have a Darwinian in our midst” and never invited Gardner to dinner again.<sup>10</sup></p>

<p>West takes this tense little interaction between Lewis and Gardner to indicate that Lewis’ belief in a literal historical Adam and Eve.  However, it should be noted that such a conclusion seems somewhat overhasty in light of what Lewis says in <em>The Problem of Pain</em>, where he articulates a view rather similar to what Gardner said that evening:</p>

<blockquote>I do not doubt that if the Paradisal man could now appear among us, we should regard him as an utter savage, a creature to be exploited or, at best, patronised.  Only one or two, and those the holiest among us, would glance a second time at the naked, shaggy-bearded, slow spoken creature: but they, after a few minutes, would fall at his feet.<sup>11</sup></blockquote>

<p>Given that Lewis actually believed what he wrote here, the difference between Lewis and Gardner seems not to have been either the question of “whether man is physically descended from animals” (which, as we have seen, Lewis was willing to grant) or the question of whether Paradisal man would be a “naked, shaggy-bearded, slow spoken creature,” a “Neanderthal ape-like figure.”  Rather they differed over whether “Paradisal man,” as Lewis puts it, would have been someone, however primitive, to be revered, or whether, as Gardner seemed to believe, a mere brute.  Taking Lewis’ written statements at face-value, it would appear that his irritation with Gardner owed less to her acceptance of evolution than it did to her dismissive presumption that our forebears were but dull savages.</p>

<p>Finally, it should be noted that Lewis was not even committed to the most basic element of a belief in a literal Adam and Eve, namely, that it was precisely two humans who fell and from whence our species came.  He writes, “<em>We do not know how many of these creatures God made</em>, nor how long they continued in the Paradisal state.  But sooner or later they fell.”<sup>12</sup>   Lewis’s mere depravity view of the Fall and his belief in the mythical character of the Eden story gave him some latitude on the question of whether the Fall consisted of a historic first human <em>pair</em> going wrong at an easily identifiable moment.  For Lewis, it was apparently quite possible that whole tribes of “Paradisal” Prehistoric humans could have gone about their business for generations—hunting, gathering, singing around the campfire, rearing children, painting in caves—before the spiritual and scientifically undetectable catastrophe of “the Fall” occurred.  In other words, if Lewis were presented with the recent genomic evidence which suggests that our species arose from an initial population of several thousand rather than only two, it is doubtful that it would have flustered him.  It simply makes no difference to Lewis’s argument how or how many humans initially “fell.”  All that matters for Lewis is that God made humans (perhaps via evolution, perhaps not) and that we humans have gone quite wrong–so wrong, in fact, that it is beyond our powers to repair ourselves.  Mere Christianity, for Lewis, does not logically depend on the historicity of the Adam and Eve story, but on the doctrine of our mere depravity.  </p>

<p class="intro">In tomorrow's concluding post, we turn to C.S. Lewis' views on the compatibility of evolution and Christian faith.</p>


<h3>Notes</h3>
<p class="date">1. Lewis, <em>The Problem of Pain</em>, (New York: Simon & Schuster, 1996), 63-64, my italics<br />
2. Ibid.<br />
3. Ibid, my italics<br />
4. Lewis, <em>A Preface to Paradise Lost</em>, (New York: Oxford University Press, 1961), 70-71<br />
5. Lewis, <em>The Problem of Pain</em>, 119<br />
6. Ibid, 64<br />
7. West, “Darwin in the Dock,” in <em>The Magician’s Twin: C.S. Lewis on Science, Scientism, and Society</em>, (Seattle: Discovery Institute Press, 2012), 121.  West’s volume takes a markedly different view of Lewis and Lewis’s legacy regarding debates about Christianity and evolution.  I intend to write a thorough critical review of West’s book in the near future. <br />
8. Ibid<br />
9. A.N. Wilson, <em>C.S. Lewis: A Biography</em>, (New York: W.W. Norton, 1990), 210<br />
10. Ibid<br />
11. Ibid<br />
12. Ibid.</p>

]]></content:encoded>
        <pubDate>Wed, 12 Dec 12 04:00:11 -0800</pubDate>
        <dc:creator>David Williams</dc:creator>
        <!--<dc:date>Dec 12, 2012 04:00</dc:date>-->
      </item>
            <item>
        <title>Series: “And God Saw That It Was Good”: Death and Pain in the Created Order</title>
        <link>http://biologos.org/blog/series/death&#45;and&#45;pain&#45;in&#45;the&#45;created&#45;order?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/series/death&#45;and&#45;pain&#45;in&#45;the&#45;created&#45;order?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>The tension generated by our understanding of God’s character, as revealed in the Bible, and by the reality of the natural world around us has been the focus of much debate within the Christian church since the first century. This series examines critically several of the proposed solutions to this problem, viewing them from the perspective of a geologist, paleontologist, and orthodox evangelical Christian.</description>
        <content:encoded><![CDATA[<h3>To Mrs. Professor in Defense of My Cat’s Honor and Not Only</h3>

<p><em>My valiant helper, a small-sized tiger <br />
Sleeps sweetly on my desk, by the computer,<br />
Unaware that you insult his tribe.<br /><br />

Cats play with a mouse or with a half-dead mole.<br />
You are wrong, though: it’s not out of cruelty.<br />
They simply like a thing that moves.<br /><br />

For, after all, we know that only consciousness<br />
Can for a moment move into the Other, <br />
Empathize with the pain and panic of a mouse.<br /><br />

And such as cats are, all of Nature is. <br />
Indifferent, alas, to the good and the evil. <br />
Quite a problem for us, I am afraid.<br /><br />

Natural history has its museums, <br />
But why should our children learn about monsters,<br />
An earth of snakes and reptiles for millions of years?<br /><br />

Nature devouring, nature devoured, <br />
Butchery day and night smoking with blood. <br />
And who created it? Was it the good Lord?<br /><br />

Yes, undoubtedly, they are innocent, <br />
Spiders, mantises, sharks, pythons. <br />
We are the only ones who say: cruelty.<br /><br />

Our consciousness and our conscience <br />
Alone in the pale anthill of galaxies <br />
Put their hope in a humane God.<br /><br />

Who cannot but feel and think, <br />
Who is kindred to us by his warmth and movement, <br />
For we are, as he told us, similar to Him.<br /><br />

Yet if it is so, then He takes pity <br />
On every mauled mouse, every wounded bird. <br />
Then the universe for him is like a Crucifixion.<br /><br />

Such is the outcome of your attack on the cat:<br />
A theological, Augustinian grimace, <br />
Which makes difficult our walking on this earth.</em></p>

<p>–Czeslaw Milosz,<sup>1</sup>  translated by the author and Robert Hass</p>

<h3>The Problem</h3>

<p>The poem above communicates in a very poignant and profound way the essence of the theological problem of death, pain, and suffering in the natural world—what has been referred to as “natural evil.” As we will see, it may also point to at least one aspect of a Christian response.</p>

<p>I have become convinced that one of the fundamental issues underlying much of the resistance of many Christians to an ancient, evolving creation is that of the problem of “natural evil.” “Natural evil” is also very often a primary focus of those who reject a personal and compassionate God, as it was for Darwin himself. The issue of theodicy thus seems not only to drive many people of Christian faith away from an acceptance of the conclusions of modern science, but also to drive members of the scientific community away from a serious consideration of the claims of the Christian faith. The topic is important, then not because its solution is central to the validity of the Christian faith, but because it often serves as an unnecessary stumbling block to a productive engagement of both science and faith.</p>

<p>The tension generated by our understanding of God’s character, as revealed in the Bible, and by the reality of the natural world around us has been the focus of much theological and philosophical debate within the Christian church since the first century. This article sets out to examine critically several of the proposed solutions to this problem, viewing them from the perspective of a geologist, paleontologist, and orthodox evangelical Christian.</p>

<p>The theological problem of death and pain emerges from the following propositional statements:</p> 

<ol><li>Scripture consistently declares the absolute goodness of God and the very goodness of his creation. Furthermore, Scripture declares God’s love and care for creation, and the glory and praise it returns to him.</li>

<li>Scripture also confesses a transcendent God who is omnipotent in power, yet immanent in creation as well. God’s creative activity is not described as being confined to some past event at the beginning of time, but as a present and continuing reality. God upholds creation in its being from moment to moment, and is creatively active in its history. This understanding of God’s relationship to creation has been well articulated by Jürgen Moltmann.<sup>2</sup></li>

<li>In seeming conflict with these confessions of God’s character, we observe death, pain, and suffering as ubiquitous, even integral, aspects of the creation around us.</li></ol>

<p>The apparent conflict between God’s goodness and the presence of pain and suffering is made especially acute when we consider the nonhuman creation.<sup>3</sup> How can we accommodate the death and suffering of animals within a theology that declares both God’s omnipotence and goodness? C. S. Lewis forcefully puts the issue before us in his book <em>The Problem of Pain</em>:</p>

<blockquote>The problem of animal suffering is appalling; not because the animals are so numerous ... but because the Christian explanation of human pain cannot be extended to animal pain. So far as we know beasts are incapable either of sin or virtue: therefore they can neither deserve pain nor be improved by it.<sup>4</sup></blockquote>

<p>Because the issue of animal pain so directly impacts our understanding of the goodness of creation, I will focus particularly on solutions to the problem as posed by Lewis.</p>

<p>How do we then reconcile the goodness of God who is immanent and active in his creation with the death, pain, and suffering we see embedded within it? There seem to be two basic alternative approaches to this dilemma.<sup>5</sup></p> 

<ol><li>Natural evil can be attributed to something independent of God and acting against his will. This position threatens to limit God’s power and freedom.</li>

<li>Natural evil can be considered a part of God’s good purpose for creation, and either directly willed or permitted by him. Such a view would seem to bring into question God’s goodness and love for his creatures.</li></ol>
 
<p>The tension between these alternatives—and efforts to avoid their negative theological consequences—surface in many of the proposed solutions to this problem.</p>

<p class="intro">In part 2, we start to look at some of the proposed solutions, beginning with the idea that a perfect creation was corrupted by a fall.</p>

<h3>Notes</h3>

<p class="date">1. This poem was included in a collection of poems that was one of two works by Czeslaw Milosz mentioned in a review article by Michael Ignatieff, “The Art of Witness,” <em>New York Review of Books</em> (March 23, 1995). I thank Carol Regehr for bringing my attention to this work.<br />
2. Moltmann refers to this aspect of God’s creative activity in history as “continuous creation.” Jürgen Moltmann, <em>God in Creation</em> (Minneapolis, MN: Fortress Press, 1993), 206–14.<br />
3. I will not address here arguments concerning the degree to which animals experience pain. This issue is considered by Robert Wennberg in “Animal Suffering and the Problem of Evil,” <em>Christian Scholar’s Review</em> 21 (1991): 120–40. It is obvious to me that, for many animals at least, pain and suffering are a very real conscious experience.<br />
4. C. S. Lewis, <em>The Problem of Pain</em> (New York: Macmillan Publishing, 1962), 129.<br />
5. As stated by John Hick, in <em>Evil and the God of Love</em>, rev. ed. (New York: HarperCollins Publishers, 1977): “For every position that maintains the perfect goodness of God is bound either to let go the absolute divine power and freedom, or else to hold that evil exists ultimately within God’s good purpose” (pp. 149–50).</p>
]]></content:encoded>
        <pubDate>Sat, 24 Nov 12 06:00:30 -0800</pubDate>
        <dc:creator>Keith Miller</dc:creator>
        <!--<dc:date>Nov 24, 2012 06:00</dc:date>-->
      </item>
            <item>
        <title>Series: Behe, Lenski and the “Edge” of Evolution</title>
        <link>http://biologos.org/blog/series/behe&#45;lenski&#45;and&#45;the&#45;edge&#45;of&#45;evolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/series/behe&#45;lenski&#45;and&#45;the&#45;edge&#45;of&#45;evolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>In this series, we reexamine the claim made by Intelligent Design proponent Michael Behe to have found a limit to “Darwinian” evolution in light of recent results from the laboratory of Richard Lenski.</description>
        <content:encoded><![CDATA[<h3>Climbing Mount Citrate</h3>
<p>As we discussed yesterday, the most dramatic innovation yet observed in the <em>E. coli</em> Long Term Evolution Experiment (LTEE) was the ability, acquired by one of the twelve cultures, to use citrate as a carbon source under aerobic conditions. When we <a href="http://biologos.org/blog/evolution-and-the-origin-of-biological-information-part-2-e-coli-vs-id">last discussed</a> the LTEE in 2011, we noted what was known then about the mutations that eventually combined to produce the Cit+ trait: </p>

<blockquote><p>Tracking down the nature of this dramatic change led to some interesting findings. The ability to use citrate as a food source did not arise in a single step, but rather as a series of steps, some of which are separated by thousands of generations:</p>

<ol><li>The first step is a mutation that arose at around generation 20,000. This mutation on its own does not allow the bacteria to use citrate, but without this mutation in place, later generations cannot evolve the ability to use citrate. Lenski and colleagues were careful to determine that this mutation is not simply a mutation that increases the background mutation rate. In other words, a portion of what later becomes “specified information for using citrate” arises thousands of generations before citrate is ever used.</li>
<li>The earliest mutants that can use citrate as a food source do so very, very poorly – once they use up the available glucose, they take a long time to switch over to using citrate. These “early adopters” are a tiny fraction of the overall population. The “specified information for using citrate” at this stage is pretty poor.</li>
<li>Once the (poor) ability to use citrate shows up, other mutations arise that greatly improve this new ability. Soon, bacteria that use citrate dominate the population. The “specified information for using citrate” has now been honed by further mutation and natural selection.</li>
<li>Despite the “takeover”, a fraction of the population unable to use citrate persists as a minority. These cells eke out a living by being “glucose specialists” – they are better at using up glucose rapidly and then going into stasis before the slightly slower citrate-eaters catch up. So, new “specified information to get the glucose quickly before those pesky citrate-eaters do” allows these bacteria to survive. As such, the two lineages in this population have partitioned the available resources and now occupy two different ecological niches in the same environment. As such, they are well on their way to becoming different bacterial species.</li></ol></blockquote>

<p>As such, we noted three distinct steps observed by the Lenski group: steps they call <em>potentiation</em>, <em>actualization</em>, and <em>refinement</em>. <em>Potentiation</em> mutations do not themselves result in the ability to use citrate under aerobic conditions, but they are necessary for it to appear later. <em>Actualization</em> is the mutation that first brings about the Cit+ trait, though, as we noted, this step produced only a very weak Cit+ effect. This nascent ability, however, then undergoes <em>refinement</em> through additional mutations and selection to give the final, robust Cit+ trait observed in the culture.</p>

<p>While some things were known about these steps when the Lenski group last published on this topic (in 2008), the precise details remained unclear. What was needed was a complete characterization of the Cit+ bacteria through whole-genome sequencing to help indentify the changes. These long-awaited results are now available in a <a href="http://www.nature.com/nature/journal/v489/n7417/full/nature11514.html">new paper</a> published last month by the Lenski group, and they shed light on all three stages of the process. </p>

<h3>Lights, camera, actualization</h3>
<p>The key step - and the one of greatest interest - is of course actualization: the mutation that converted a Cit- cell to a Cit+ one. This is also one of the easiest steps to study, since the mutation provides the cell with a new feature that can be detected experimentally. Though <em>E. coli</em> cannot use citrate as a carbon source in the presence of oxygen, they are capable of using citrate in anoxic conditions (i.e. when oxygen is absent). To do so, they employ a protein that imports citrate in to the cell while at the same time exporting a compound called succinate. Since this protein is already present in the <em>E. coli</em> genome, it was long suspected that a genetic regulatory change that turned on its production in the presence of oxygen could be the key innovation that produced the first Cit+ bacterium in the culture. As we discussed <a href="http://biologos.org/blog/behe-lenski-and-the-edge-of-evolution-part-1">yesterday</a>, Behe notes that this change could result from a loss-of-FCT or a gain-of-FCT mutation: </p>

<blockquote>“If the phenotype of the Lenski Cit+ strain is caused by the loss of the activity of a normal genetic regulatory element, such as a repressor binding site or other FCT, it will, of course, be a loss-of-FCT mutation, despite its highly adaptive effects in the presence of citrate. If the phenotype is due to one or more mutations that result in, for example, the addition of a novel genetic regulatory element, gene duplication with sequence divergence, or the gain of a new binding site, then it will be a noteworthy gain-of-FCT mutation.”</blockquote>

<p>Interestingly, the actualization mutation was indeed a change of regulation of the anoxic citrate / succinate transporter, and it arose through a gain-of-FCT mutation. The mutation turned out to be a side-by-side duplication of the citrate / succinate transporter gene, as well as portions of two genes on either side of it. This imprecise duplication placed a partial fusion of these flanking genes next door to one of the copies of the citrate / succinate transporter gene. This brought the copy under the control of promoter sequences derived from of one of its neighbors, a gene that is active when oxygen is present. The resulting product was a copy of the citrate / succinate transporter gene that was now very weakly expressed in aerobic conditions. Since this is an example of a mutation that duplicates a gene and simultaneously creates a new regulatory element for it (causing significant sequence divergence), this is a clear-cut example of a gain-of-FCT mutation. </p>

<h3>Responding to the data</h3>
<p>While Behe has not yet, to my knowledge commented on this particular development within the LTEE, one of his colleagues in the Intelligent Design Movement (IDM), microbiologist Ann Gauger, has offered <a href="http://www.evolutionnews.org/2012/10/innovation_or064701.html">her thoughts</a>. Two themes emerge in her commentary: that the Cit+ trait is “not new”, and that the number of mutations it required  were within the bounds set out by Behe and another member of the IDM, structural biologist Douglas Axe: </p>

<blockquote><p>When is an innovation not an innovation? If by innovation you mean the evolution of something new, a feature not present before, then it would be stretching it to call the trait described by Blount et al. in "Genomic analysis of a key innovation in an experimental Escherichia coli population" an innovation [...]</p>
<p>The total number of mutations postulated for this adaptation is two or three, within the limits proposed for complex adaptations by Axe (2010) and Behe in Edge of Evolution. Because the enabling pre-adaptive mutations could not be identified, though, we don't know whether this was one mutation, a simple step-wise series of adaptive mutations, or a complex adaptation requiring one or two pre-adaptations before the big event.</p>
<p>But does this adaptation constitute a genuine innovation? That depends on the definition of innovation you use. It certainly is an example of reusing existing information in a new context, thus producing a new niche for E. coli in lab cultures. But if the definition of innovation is something genuinely new, such as a new transport molecule or a new enzyme, then no, this adaptation falls short as an innovation. And no one should be surprised.</p></blockquote>

<p>While Gauger does not speak to the tension between her description of the Cit+ mutation as “not genuinely new” and Behe’s criteria that this should be classified as a gain-of-FCT mutation, it is clear that she views this event as within Behe’s “edge” – i.e. within the bounds of “what Darwinism can do.” Additionally, she sees it as falling within the scope of what is evolutionarily possible as proposed by Axe’s work. In the next installment of this series, we’ll revisit how Behe defines his (claimed) limit of what evolutionary processes can accomplish, with this new evidence in hand. In doing so, a careful examination of the potentiation and refinement phases of the Cit+ transition will be informative. </p>

<h3>For further reading: </h3>
<p>Blount, Z.D., Barrick, J.E., Davidson, C.J. and Lenski, R.E. (2012). Genomic analysis of a key innovation in an experimental <em>Escherichia coli</em> population. <em>Nature</em> 489; 513- 518. </p>
<p>Michael J. Behe, <em>The Edge of Evolution: The Search for the Limits of Darwinism</em> (New York: Free Press, 2007).</p>
<p>Michael J. Behe (2010). Experimental evolution, loss-of-function mutations, and “The first rule of adaptive evolution”. <em>The Quarterly Review of Biology</em> 85(4); 419-445. </p>
]]></content:encoded>
        <pubDate>Tue, 23 Oct 12 09:17:13 -0700</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Oct 23, 2012 09:17</dc:date>-->
      </item>
            <item>
        <title>Series: From the Dust</title>
        <link>http://biologos.org/blog/series/a&#45;leap&#45;of&#45;truth?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/series/a&#45;leap&#45;of&#45;truth?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>In this series, Ryan Pettey offers several clips from his powerful documentary &quot;From the Dust&quot;. This feature&#45;length film is divided up into various sections, each of which wrestles with the difficult problems that arise when reconciling Scripture with the theory of evolution. A light of hope dawns on the science&#45;faith conversation, however, as scientists and theologians engage in honest dialogue about tough issues such as the interpretation of Genesis, the nature of the Fall, and the idea of random design. Their profound insights are sure to enlighten all minds, raise deeper questions, and provoke new thought.</description>
        <content:encoded><![CDATA[<p align="center"><iframe src="http://player.vimeo.com/video/25367217?title=0&amp;byline=0&amp;portrait=0" width="533" height="300" frameborder="0"></iframe></p>

<p>This week we feature the third clip from the upcoming documentary “From the Dust”, directed by filmmaker Ryan Pettey. It is our sincere hope that, above all else, the film can become a focal point for some of the big questions that inevitably arise at the intersection of science and faith. We believe Ryan's work will inform faith and enrich discussion, and we feel that this week’s topic, the Fall, is of particular importance for Christians as we think through the ramifications of creation by evolutionary mechanisms.</p>

<p>To help foster such dialogue, we are once again including several discussion questions with this week’s clip. In the transcript below, you’ll find several prompts that are meant to help viewers dig deeper into the material being presented. Mouse over each highlighted region and a question will appear on the side. We encourage you to watch this video with your friends, your churches, your small groups and Sunday School classes, your pastors -- or anyone else for that matter – and take some time to discuss what is being said (and maybe even what isn’t). You may not all agree, but you will find yourselves engaged in fruitful and spirited conversation. And it is this kind of conversation that will help move the science and faith discussion forward.</p>

<p>The provided questions are just a few of the discussion questions that go with this transcript, and we'd be happy to send them to you to foster further conversation within your church or small group setting. If you’d like to see the questions, or if you have stories from your own small group discussions about the clip, we would love to hear from you at <a href="mailto:info@biologos.org">info@biologos.org</a>.</p>

<p class="intro">Editor's Note: The full documentary is now available on DVD and Blu-ray.  You can order the film <a href="http://www.highwaymedia.org/Product4.aspx?ProductId=1985&CategoryId=171">here</a>, and learn more about the project <a href="http://fromthedustmovie.org/">here</a>.</p>

<h3>“The Fall” Transcript</h3>

<div class="see-also" id="pop1" style="display:none;">Dr. Schloss says that one of the big questions for theologians is: what is the nature of the Fall? How does Dr. Polkinghorne address this question at the end of the video?</div>

<div class="see-also" id="pop2" style="display:none;">Jeff Schloss states, “Christians [and] all theists who believe in a good and providential God have wrestled with [this]…problem of natural evil.” Then, Michael Lloyd says, “[Evolution] does not look like the sort of system that a good and loving and benevolent God would have set up.” What does natural evil mean to you in the history of life? What aspect of natural evil caused Darwin to lose his faith? Does evolution imply the world is naturally evil? If so, how?</div>

<p><strong>Dr. Jeff Schloss</strong>: “My friends and colleagues, who have concerns about evolutionary theory for theological reasons, are onto something, and <a onmouseover="toggle_visibility('pop1');" onmouseout="toggle_visibility('pop1');">one of them involves the Fall</a>, the nature of the Fall, what it is. Even if it is a metaphor, it is a metaphor for something, and what is that something? And how would we make sense of that something in light of evolutionary theory? The other issue on this has been probably the most serious issue that not only Christians, but <a onmouseover="toggle_visibility('pop2');" onmouseout="toggle_visibility('pop2');">all theists who believe in a good and providential God have wrestled with, it is the problem of natural evil.</a>”</p>

<div class="see-also" id="pop3" style="display:none;">What three reasons does Lloyd offer to show that all was not harmonious before the Fall? Do they lend credibility to an evolutionary view of creation?   Do you agree with Lloyd’s analysis?</div>

<div class="see-also" id="pop4" style="display:none;">Many people feel that it is impossible to harmonize the Biblical view with the evolutionary view. Would you agree? Why or why not? </div>

<div class="see-also" id="pop5" style="display:none;">What does it mean for humans to work in the “garden” in today’s world?</div>

<p><strong>Reverend Dr. Michael Lloyd</strong>: “The problem of evil is a real problem to religious faith. It was certainly the thing for Darwin himself. That is what made him question his faith, and I think rightly so. It does not look like the sort of system that a good and loving and benevolent God would have set up. Now, obviously that raises huge questions because <a onmouseover="toggle_visibility('pop3');" onmouseout="toggle_visibility('pop3');">we don’t see any evidence of a world that was harmonious</a>. We only see evidence of a world that was at war with itself, and that obviously is <a onmouseover="toggle_visibility('pop4');" onmouseout="toggle_visibility('pop4');">the problem that Christian theologians face</a>. For a long time I used to believe that the Genesis narratives paint a picture of a world completely at peace, completely harmonious until the human fall, and then something goes wrong. When I began to look at it more closely, I began to think that there is more to it than that. There is evidence from the text that things are already dislocated, already out of joint. For one thing, there is the serpent, and however you interpret the serpent, here is a bit of the created order that is actively talking against God, working against God—so there is already something that has gone wrong. Secondly, there is the command to fill the earth and subdue it. There is the suggestion that something needs to be subdued, something is not quite right that needs to be put right and humans beings are called to do that—to put it right. <a onmouseover="toggle_visibility('pop5');" onmouseout="toggle_visibility('pop5');">And thirdly, it is a garden</a>. It is almost as if God has said, ‘Here is a little bit I have done for you, here is a little bit of order and harmony that I have done for you. Now you go and spread that order and that harmony throughout the rest of creation.’ The tragedy is, of course, that human beings don’t do that. Rather than put that right, they make it worse.”</p>

<div class="see-also" id="pop6" style="display:none;">When talking about the image of God, Alister McGrath points to humanity’s relational abilities. How does a human’s capacity for relationship with God  image Him?</div>

<p><strong>Dr. Alister McGrath</strong>: “Clearly Scripture distinguishes humanity from the rest of creation by <a onmouseover="toggle_visibility('pop6');" onmouseout="toggle_visibility('pop6');">this idea of the image of God</a>. And that is understood in a number of ways—one of which is relational. Human beings have this God-given capacity to be able to relate to God, which is simply not there for the rest of creation. How do we understand that phrase: the image of God? If we accept the narrative of biological evolution, we have to say that at some point humanity became sufficiently distinguished from the rest of the natural world to be able to have this relationship with God.”</p>

<div class="see-also" id="pop7" style="display:none;">Is it possible, as Lloyd has indicated, that the image of God was attained at a decisive moment in light of evolutionary theory? </div>  

<p><strong>Reverend Dr. Michael Lloyd</strong>: “If you have a very finely graded gas tap and you begin to turn it on, initially, there is not enough gas in the air for the gas to ignite. So, you turn it up some more, still nothing, a bit more, still nothing, and a bit more, still nothing. At a particular point, there will be enough gas to air ratio for the thing to ignite. So, you can have a completely smooth, upward development, and yet, you can have something decisive happening at a particular moment. You get an increase in that moral capacity and moral awareness; you get an increase in their relational ability, in their social ability. You get an increase in their tool-making ability. You get an increase in their language. <a onmouseover="toggle_visibility('pop7');" onmouseout="toggle_visibility('pop7');">At a particular point there is enough of all that.</a> There is enough relational capacity; there is enough social capacity and moral awareness and spiritual awareness for God to deal with us in a new way: ‘They have enough creativity to reflect the fact that I am the creator. They have enough relational capacity to reflect the fact that I am love. This in some way reflects who I am, and I will stamp my image upon them.’”</p>

<div class="see-also" id="pop8" style="display:none;">How does Polkinghorne define mortality? How does that relate to what he calls self-consciousness?</div>

<div class="see-also" id="pop9" style="display:none;">In what sense is Adam and Eve’s disobedience a fall? And, in what sense is it upwards?</div>

<div class="see-also" id="pop10" style="display:none;">What similarities could the story of the fall of Adam and Eve bear to the gaining of consciousness by humanity?</div>

<div class="see-also" id="pop11" style="display:none;">Could the story of the Fall be a symbolic simplification of what went wrong in humans? If so, in what ways?</div>

<div class="see-also" id="pop12" style="display:none;">If the Fall were to be symbolic and not historical, would that make the principles in it any less true?</div>

<div class="see-also" id="pop13" style="display:none;">According to Polkinghorne, what is spiritual death? In Romans 5,  Paul speaks of Jesus as being the second Adam.  What is Paul getting at?  In what sense does the second Adam cure the death problem created by the action of the first Adam?    Is it really a cure, or is it  just medication that makes the symptoms more bearable?</div>

<p><strong>Reverend Dr. John Polkinghorne</strong>: “As hominids evolved and became more complex, then self-consciousness, in the sense of projecting our minds into the remote future or past began to dawn in them. And that didn’t bring biological death into the world, because obviously it had been there for millions of years beforehand, but it brought into the world what you might call <a onmouseover="toggle_visibility('pop8');" onmouseout="toggle_visibility('pop8');">mortality</a>. Because our ancestors were self-conscious, they knew they were going to die. Because they had turned away from God, they had alienated themselves to the only one who was the ground for the hope of a destiny beyond death. And so, mortality, meaning the sadness, the human sadness at transiency and decay dawned in human life. Another very subtle feature of the Genesis 3 story is that it is <a onmouseover="toggle_visibility('pop9');" onmouseout="toggle_visibility('pop9');">a fall upwards</a> as people would sometimes say. It is the gaining of some knowledge, the knowledge of good and evil, the story says. And so, <a onmouseover="toggle_visibility('pop10');" onmouseout="toggle_visibility('pop10');">the dawning of self-consciousness</a> is also the gaining of something that wasn’t there before. What the serpent whispers in Eve’s ear is, ‘eat this fruit, and you will be like God. You won’t need God anymore. You can do it yourself.’ <a onmouseover="toggle_visibility('pop11');" onmouseout="toggle_visibility('pop11');">That is the fundamental sin</a>, the fundamental mistake in human life is believing that we can do it on our own, doing it my way, and spiritual death is to deliberately and persistently cut yourself off from that. It doesn’t occur as an angry God giving you a punishment for not falling into line. It is simply that you have punished yourself. You know, preachers sometimes say that the gates of hell are locked from the inside not to keep the creatures in, but to keep God out. And that, I think in the end, is what spiritual death is if you persist in it. But God is always, I am sure, at work, seeking to draw people back into the divine love. <a onmouseover="toggle_visibility('pop12');" onmouseout="toggle_visibility('pop12');">I think that is the work that is necessary</a> to understand what Paul is getting at in <a onmouseover="toggle_visibility('pop13');" onmouseout="toggle_visibility('pop13');">Romans 5</a> when he says that death came into the world through one man. The cost of development is a degree of precariousness. The people need the grace of God if we truly are to live fulfilling lives.”</p>]]></content:encoded>
        <pubDate>Fri, 19 Oct 12 05:00:13 -0700</pubDate>
        <dc:creator>Ryan Pettey</dc:creator>
        <!--<dc:date>Oct 19, 2012 05:00</dc:date>-->
      </item>
            <item>
        <title>Shaping the Human Soul, Part 5</title>
        <link>http://biologos.org/blog/shaping&#45;the&#45;human&#45;soul&#45;part&#45;5?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/shaping&#45;the&#45;human&#45;soul&#45;part&#45;5?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>We need to have an account of Sin in terms of habit.  A lot of Christians today think of “sins” and discreet choices, but historically Christians have thought of Sin as a habitual tendency and disordering.</description>
        <content:encoded><![CDATA[<p>After Curt Thompson and James K.A. Smith finished their individual presentations, someone asked them about how they understood the nature of Sin.</p>

<p>Dr. Thompson responded that while the essence of Sin is ultimately mysterious, he suggests that there are some ways to think about Sin in the language of interpersonal neurobiology.</p>

<p>On the other hand, Dr. Smith found the wisdom of St. Augustine in <em>The Confessions</em> quite helpful—The essence of Sin is loving the wrong things in the wrong ways. It’s a disordered love.</p>

<p>We need to have an account of Sin in terms of <em>habit</em>.  A lot of Christians today think of “sins” and discreet choices, but historically Christians have thought of Sin as a habitual tendency and disordering.  It is formed over time—that’s what a vice is.  Virtue and sanctification require ongoing re-habituation, a counter-formation of our inclinations.</p>

<p>Dr. Thompson followed up with a reference to Malcolm Gladwell’s <em>Outliers</em> and noted that people who are really good at what they do generally acquire it through lots of practice.   Thompson then asked the audience, “How are we, in an embodied way, going to practice Christianity for 10,000 hours?”</p>

<p class="intro">We hope you have enjoyed this video series.  If you'd like to learn more, we encourage you to read Curt Thompson's <a href="http://www.amazon.com/Anatomy-Soul-Connections-Neuroscience-Relationships/dp/141433415X"><em>The Anatomy of the Soul</em></a> and James K.A. Smith's <a href="http://www.jameskasmith.com/"><em>Desiring the Kingdom: Worship, Worldview, and Cultural Formation</em></a>.  Dr. Smith also has a new book coming out this winter entitled <a href="http://www.amazon.com/Imagining-Kingdom-Worship-Cultural-Liturgies/dp/0801035783/ref=sr_1_1?s=books&ie=UTF8&qid=1348604590&sr=1-1&keywords=imagining+the+kingdom"><em>Imagining the Kingdom: How Worship Works</em></a>.  
]]></content:encoded>
        <pubDate>Fri, 05 Oct 12 04:00:00 -0700</pubDate>
        <dc:creator>Curt Thompson, Smith, James K.A.</dc:creator>
        <!--<dc:date>Oct 05, 2012 04:00</dc:date>-->
      </item>
            <item>
        <title>Science and the Bible: Theistic Evolution, Part 4</title>
        <link>http://biologos.org/blog/science&#45;and&#45;the&#45;bible&#45;theistic&#45;evolution&#45;part&#45;4?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/science&#45;and&#45;the&#45;bible&#45;theistic&#45;evolution&#45;part&#45;4?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>Scientist&#45;theologians who write about TE also think about creation and theodicy in terms of divine “kenosis” and eschatology. So today we’ll conclude our “implications” section by returning to creational theology, and then turn to the ways TEs re&#45;think Adam and Eve in light of human evolution.</description>
        <content:encoded><![CDATA[<h3>Some implications and conclusions of Theistic Evolution—continued again</h3>

<p>Last time I introduced the idea that a Christocentric theology of creation is one of the hallmarks of Theistic Evolution, and I focused on the idea of the “Crucified God.”   But the scientist-theologians who write about TE also think about creation and theodicy in terms of divine “kenosis” and eschatology. So today we’ll conclude our “implications” section by returning to creational theology, and then turn to the ways TEs re-think Adam and Eve in light of human evolution.</p>

<h3>Kenosis, theodicy and eschatology</h3>

<p>John Polkinghorne and others, citing Philippians 2:7, like to speak about divine <a href="http://en.wikipedia.org/wiki/Kenosis">“kenosis”</a>, God’s choice to “empty himself” in taking on human form; they apply this also to the act of creating the world in a great work of <a href="http://www.amazon.com/The-Work-Love-Creation-Kenosis/dp/0802848850">self-sacrificial love</a>. Although Wikipedia gives much information about the roots of this doctrine in Orthodox and Catholic circles, my knowledge is minimal and I cannot confirm what I find there (though it might all be correct). According to a theologian I once consulted, kenosis in soteriology was discussed by Lutherans in the 17th century (if not perhaps even earlier, by others), but was only extended to theology of creation in recent decades. The most I can say with confidence is this: one of the most striking features of Protestant thought about nature, during and since the Scientific Revolution, is the degree to which it is <em>not</em> Christocentric in the sense we are now discussing. In much Protestant and Evangelical literature devoted to the topic of creation, one often looks in vain even for <em>references</em> to Jesus, let alone to Jesus as the suffering servant through whom the world was made,. Only in the latter part of the 20th century do I find a clear emphasis on the idea that nature is the creation of the God who put aside power and was crucified. If this understanding is correct, then I would say that it’s high time, and let’s get on with it!</p>

<p>TEs (especially Polkinghorne) are also in the forefront of those Christian writers who are linking theodicy inextricably with eschatology. Yet another scientist-theologian, Robert Russell, offers this powerful eschatological vision in <em><a href="http://www.ctns.org/CAO.html">Cosmology From Alpha to Omega</a></em>, drawing on all of the main ideas I’ve presented in this section: </p>

<blockquote>&#91;I&#93;n order to move us beyond mere kenosis to genuine eschatology, I believe that both kenotic theology and eschatology must be structured on a trinitarian doctrine of God. The reason here is simple: it is the trinitarian God who will act to bring about the redemption of all of nature since it is this God who is revealed as God in and through the cross and resurrection of Jesus. A kenotic theodicy (that God suffers voluntarily with the world) in and of itself is not redemptive. Eschatology is required, in which the Father who suffers the death of the Son acts anew at Easter to raise Jesus from the dead. In turn, the involuntary suffering of all of nature--each species and each individual creature--must be taken up into the voluntary suffering of Christ on the cross (theopassionism) and through it the voluntary suffering of the Father (patripassionism).(p. 266) </blockquote>

<p class="caption-left"><img src="http://biologos.org/uploads/static-content/davis_te_4_2.jpg" alt="" height="335" width="266"  /><br />George MacDonald (<a href="http://georgemacdonald.info/gmd_1862.jpg">source</a>)</p>

<p>Because this series is primarily focused on the history of approaches to understanding Science and the Bible, I will not delve more deeply into these important theological issues, but only direct readers  to resources such as these. Still, I close this section with a quotation from George MacDonald’s <em><a href="http://www.online-literature.com/george-macdonald/unspoken-sermons/2/">Unspoken Sermons</a></em>, the same passage that C. S. Lewis used in abbreviated form as an epigram for <em>The Problem of Pain</em>: </p>

<blockquote>“the Son of God, who, instead of accepting the sacrifice of one of his creatures to satisfy his justice or support his dignity, gave himself utterly unto them, and therein to the Father by doing his lovely will; who suffered unto the death, not that men might not suffer, but that their suffering might be like his, and lead them up to his perfection...”</blockquote>

<br /><br /><br /><br />

<h3>Adam, the fall, and sin</h3>

<p><strong>(5) TEs have to confront questions about human origins that are much easier for OECs or YECs to answer: Did Adam and Eve really exist as historical persons? Was the “fall” an actual historical event? If not, what is the origin of sin?</strong></p>

<p class="caption-center"><img src="http://biologos.org/uploads/static-content/davis_te_4_3.jpg" alt="" height="246" width="563"  /><br />Michelangelo Buonarroti, “The Fall and Expulsion from the Garden of Eden,” Cappella Sistina, Vatican (1509-10)</p>

<p>My comments here are much briefer, but I don’t mean to imply that the questions are any less important than the one I’ve just dealt with. Polkinghorne does not hold a traditional view of the fall, but he likes Reinhold Niebuhr’s view “that original sin is the only empirically verifiable Christian doctrine!” (<em>Belief in God in an Age of Science</em>, p. 88) This reminds me of G. K. Chesterton, who famously remarked, “Certain new theologians dispute original sin, which is the only part of Christian theology which can really be proved” (<em><a href="http://www.pagebypagebooks.com/Gilbert_K_Chesterton/Orthodoxy/The_Maniac_p1.html">Orthodoxy</a></em>, chap. 2). In other words, anyone who doubts the idea that we are “fallen” creatures simply needs to look around—that is all the evidence of our strong bent to wickedness that you’ll ever need.</p>

<p>There are ways to finesse the fall and evolution in a quasi-concordistic manner, such as the “headship” model advocated by <a href="http://biologos.org/blog/series/models-for-relating-adam-and-eve-with-contemporary-anthropology">Denis Alexander</a>. Others reject any appeal to Concordism, stressing the principle of divine accommodation. For example, <a href="http://www.ualberta.ca/~dlamoure/p_adam_1.pdf">Denis Lamoureux</a> argues that in the revelatory process the Holy Spirit came down to the level of understanding of the ancient Hebrews and used their ancient conception of <em>de novo</em> creation, in which humans were created quickly and completely. Thus, in Genesis chapters 2 and 3, Adam and Eve are ancient vessels that deliver the <em>inerrant</em> spiritual truths that God created us and that we are sinners. </p>

<p>The views that have received the most attention among evangelicals, however, are probably those of biblical scholar Peter Enns, particularly his new book, <em><a href="http://www.amazon.com/Evolution-Adam-The-Doesnt-Origins/dp/158743315X">The Evolution of Adam</a></em>. Instead of trying to summarize them myself, I’ll link his discussion of <a href="http://www.internetmonk.com/archive/pete-enns-on-mistakes-in-the-adamevolution-discussion">“Mistakes in the Adam/Evolution Discussion”</a>, since it parallels some of the content in the book. Also see <a href="http://www.patheos.com/blogs/peterenns/2012/08/spinning-our-wheels-a-response-to-a-review-of-the-evolution-of-adam-with-apologies-to-those-with-a-500-word-1-6-minute-internet-attention-span/">his replies</a> to some evangelical scholars who have been critical of the book. </p>

<p>One of the most original and thoughtful proposals I have seen comes from philosopher Robin Collins (for bibliographical information on this and the other works cited in the rest of this column, see below). Collins calls his model the “Historical/Ideal” view, because “the original state described in the Garden story represents an ideal state that was never realized,” showing “what an ideal relation with God would be like.” Adam and Eve represent every person who has ever lived, but they also represent “the first hominids, or group of hominids, who had the capacity for free choice and self-consciousness.” Just as the first hominids made sinful choices, so do we now, and original sin involves “the resulting bondage to sin and spiritual darkness that is inherited from our ancestors and generated by our own choices.” I can’t convey the subtlety and thoroughness of this account in a short space, so those who want to know more will have to read for themselves. Conveniently, Collins provides a link to a “near final version” of his paper on his <a href="http://home.messiah.edu/~rcollins/home.htm">web site</a>. If someone wants to summarize his arguments in a few paragraphs below, it would be a real service to our “course.”</p>

<h3>Problems with historicity</h3>

<p><strong>(6) Questions about the historicity of Adam & Eve are underscored by evolution, but they would still come up even if Darwin had never existed and no one had ever proposed that humans and other animals have common ancestors. The Bible places Adam & Eve in a Neolithic world, with cities and agriculture, whereas non-biological scientific evidence shows that humans existed for a very long time before cities or agriculture came into existence. </strong></p>

<p>Read that again. It’s a crucial point. Far too many people believe—erroneously—that evolution is responsible for undermining the historicity of Adam, Eve, and the Garden of Eden. In fact, the relevant science here is almost entirely from anthropology, not biology, and it involves human antiquity, not common ancestry. Since the mid-nineteenth century, evidence has been building that creatures anatomically and behaviorally identical to us have been on this planet for a very long time, far longer than the biblical 6,000 years. We could leave Darwin and evolution entirely out of the picture, and we would still be having a conversation about the historicity of Genesis 2 and 3. The same issues pertain to any OEC scenario. Most proponents of ID can’t duck this, either, even though they get to say “officially” that ID isn’t about the Bible. Because most ID proponents are not YECs, they accept the general validity of the methods used to date rocks and fossils, and so (by implication) this is their problem, too, whether or not it’s acknowledged.</p>

<p>To illustrate my point historically, let me introduce readers to George Frederick Wright (read more <a href="http://collopy.net/projects/wright.html">here</a> and <a href="http://en.wikipedia.org/wiki/George_Frederick_Wright">here</a>). Ronald Numbers, the leading historian of American religion and science, wrote a clear, detailed article about this (see the reference below) that I strongly recommend to anyone who’s interest has been piqued. An influential Congregationalist clergyman and theologian, Wright was mentored by Harvard botanist <a href="http://biologos.org/blog/asa-gray-and-charles-darwin-discuss-evolution-and-design-part-1">Asa Gray</a>, served briefly under <a href="http://en.wikipedia.org/wiki/Thomas_Chrowder_Chamberlin">Thomas C. Chamberlin</a> on the U. S. Geological Survey, and even contributed articles on early humans and the ice age—his specialty—to scientific journals. During the 1870s, he worked closely with Gray to promote what is usually seen as a type of Theistic Evolution. By the early twentieth century, however, he appeared in some of his writings to have almost completely reversed his views on evolution. He even contributed an essay on “The Passing of Evolution” to the famous pamphlets, <em><a href="http://www.blueletterbible.org/commentaries/comm_view.cfm?AuthorID=16&contentID=4590&commInfo=20&topic=The%20Fundamentals">The Fundamentals</a></em>, that later gave its name to that movement. </p>

<p>In other writings, however, Wright seemed to remain convinced of evolution, at one point saying that, “it is difficult to resist the conclusion that, so far as his physical organism is concerned, man is genetically connected with the highest order of the Mammalia.” Whatever he really thought about common ancestry—whether he was really a TE, an OEC, or an ID (one could make a good case for each)—the question of human antiquity dogged Wright for decades, as he sought ways to reconcile the genealogies in Genesis with accumulating evidence that humans have existed much longer than 6,000 years. Fortunately for Wright’s Christian faith, which probably hung in the balance, the famous Princeton theologian <a href="http://www.theopedia.com/B_B_Warfield">Benjamin Breckenridge Warfield</a>, together with the conservative biblical scholar William Henry Green, managed to persuade Wright that the Genesis genealogies had plenty of wiggle room. Anyone wanting to see the crucial details should read Green’s paper on <a href="http://www.outersystem.us/creationism/PrimevalChronology.html">“Primeval Chronology</a>” at this point. Note Warfield’s own conclusion (same URL): “There is no reason inherent in the nature of the Scriptural genealogies why a genealogy of ten recorded links, as each of those in Genesis v. and xi. is, may not represent an actual descent of a hundred or a thousand or ten thousand links.”</p>

<p>Can this really be true, without straining the whole idea of historicity? <a href="http://www.asa3.org/ASA/resources/CSRYoung.html">Davis Young’s skepticism</a> seems appropriate here. How far back can we place Adam and Eve and still have contact with the biblical period? In my opinion, a clear and convincing picture of an historical Adam and Eve, reconciling the biblical picture with human antiquity, has not yet been produced, and I am doubtful that we will ever have one. Those who want more information about the possibilities and the difficulties are invited to consult the articles (cited below) by anthropologist James Hurd, evolutionary biologist David Wilcox, and anthropologist Dean Arnold. To the best of my knowledge, Hurd and Wilcox are TEs, while Arnold is an OEC. It’s up to you, my “students,” to consult these sources and place summaries and comments below. I’ve done enough already.  </p>

<h3>Looking Ahead</h3>
<p>In about two weeks, I’ll conclude with a short history of Theistic Evolution. There’s plenty to think about in the interval. Please follow some of these links, borrow some of these books, and add your views to mine.</p>

<h3>Citations</h3>
<p class="date">Dean Arnold, “How Do Scientific Views on Human Origins Relate to the Bible?” in <a href="http://www.amazon.com/Not-Just-Science-ebook/dp/B000SEVJC6"><em>Not Just Science</em></a>, edited by Dorothy F. Chappell & E. David Cook (Zondervan, 2005), 129-40.<br /><br />
Robin Collins, “Evolution and Original Sin,” in <em><a href="http://biologos.org/resources/books/perspectives-on-an-evolving-creation">Perspectives on an Evolving Creation</a></em>, edited by Keith B. Miller (Eerdmans, 2003), 469-501.<br /><br />
James P. Hurd, “Hominids in the Garden?” in <em>Perspectives on an Evolving Creation</em>, 208-33.<br /><br />
Ronald L. Numbers, “George Frederick Wright: From Christian Darwinist to Fundamentalist,” <em>Isis</em> 79 (1988): 624–45.<br /><br />
David Wilcox, “Finding Adam: The Genetics of Human Origins,” in <em>Perspectives on an Evolving Creation</em>, 234-53.</p>]]></content:encoded>
        <pubDate>Tue, 25 Sep 12 05:00:57 -0700</pubDate>
        <dc:creator>Ted Davis</dc:creator>
        <!--<dc:date>Sep 25, 2012 05:00</dc:date>-->
      </item>
            <item>
        <title>Death and Rebirth: The Role of Extinction in Evolution</title>
        <link>http://biologos.org/blog/death&#45;and&#45;rebirth&#45;the&#45;role&#45;of&#45;extinction&#45;in&#45;evolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/death&#45;and&#45;rebirth&#45;the&#45;role&#45;of&#45;extinction&#45;in&#45;evolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>When they imagine evolution, many Christians picture novelty: new species arising over time, or speciation events. But as the most recent Southern Baptist Voices exchange makes clear, many Christians also focus on the role of death in evolution—something that can be a stumbling block.</description>
        <content:encoded><![CDATA[<p>When they imagine evolution, many Christians picture novelty: new species arising over time, or <em>speciation</em> events. But as the most recent Southern Baptist Voices exchange makes clear, many Christians also focus on the role of death in evolution—something that can be a stumbling block to seeing it as a means by which a good God creates.  This is especially true when we imagine the death of individual creatures in fierce competition for limited resources, whether such struggle takes place on the savanna or elsewhere.  </p>

<p>In his essay for that series, Jeff Schloss addressed the question of whether animal death is a natural evil, but also noted that such theological considerations aside, death does not actually “drive evolution” in the way most people imagine—especially when they think of violence in the natural world.  This more complicated sense of death’s role is partially the result of modern evolutionary science recognizing the importance of cooperation and inter-relation among species, rather than just direct competition.  But just as important is the knowledge that evolution is significantly shaped not by the deaths of individual creatures, but by <em>extinction</em>, the loss of species over time. In this post, we explore some aspects of how extinction acts as both a destructive and creative force in evolutionary history, including the evolutionary history of mammals. </p>

<h3>Sporadic extinction</h3>
<p>Extinction is actually a common feature of life on earth when viewed over long (e.g. geological) timescales. By some estimates, over 99% of the species that have ever lived have gone extinct. One factor that promotes extinction is the fact that evolution does not produce species that are <em>optimally</em> adapted to their environment, but only <em>better adapted than their local competitors</em>. Invasive species testify to this fact: local (endemic) species are not always the best-adapted species for their own environment. Examples abound where species from other environments are actually better-suited to out-compete endemic species. Here in my own province, the invasive <a href="http://www.bcinvasives.ca/invasive-species/invasive-plants/himalayan-blackberry">Himilayan blackberry</a> (<em>Rubis discolor</em>) easily outcompetes many endemic species. If endemic species were optimally adapted to their environment, this would not be possible, as they would outcompete all exotic species. Instead, exotic species, by chance, might be better adapted to an ecosystem they did not evolve in. These exotics may be capable of eliminating endemic species altogether. </p>

<p>Such an extinction event (of a single species, or perhaps a handful of species) alters the environment of other remaining species in an ecosystem. This, in turn, may influence the ability of some of these remaining species to reproduce compared to other species. For example, the extinction of a competitor might allow a species to increase in population size. Conversely, the extinction of a species that provides a benefit (such as a pollinator) may reduce a species in number. As the ecosystem landscape shifts due to loss of species, new biological opportunities, or niches, might arise. These new niches are then available to support new species to fill them. </p>

<h3>Extinction, <em>en masse</em></h3>
<p>One way to appreciate how extinction opens up new niches is to examine mass extinction events – geologically brief periods where large numbers of species go extinct at the same time. Over the history of life on our planet there have been several mass extinction events. The largest such event, at the end of the <a href="http://en.wikipedia.org/wiki/Permian%E2%80%93Triassic_extinction_event">Permian</a> (~250 million years ago) appears to have been caused, at least in part, by intense volcanic activity over several hundred thousand years. This activity likely shifted CO2 levels and eventually led to a “runaway” greenhouse effect that dramatically raised global temperatures and led to anoxic (i.e. oxygen-depleted) oceans, though the exact contributions of these varied factors remains an area of scientific debate. What appears certain is that during this period environmental changes were too rapid for most species to keep evolutionary pace with, and as a result over 90% of the world’s species alive at that time went extinct. Obviously this represents destruction of biodiversity on an unimaginable scale, and the destructive effects of this event are with us to this day. </p>

<h3>Speciation, <em>en masse</em></h3>
<p>This destruction, however, is not the whole story. Following on from the Permian mass extinction, we observe a steady increase in new species. These are species previously unknown in the fossil record. In fact, this pattern (a “radiation” of new species following an extinction event) is the rule, not an exception – we see the same effect after every mass extinction in the fossil record. Extinction is a driving force for novelty. </p>

<p>Perhaps the most famous mass extinction event is the <a href="http://en.wikipedia.org/wiki/Cretaceous%E2%80%93Paleogene_extinction_event">Cretaceous – Paleogene (KPg) extinction</a>, and it too follows this standard pattern. This mass extinction took place 65 million years ago when an asteroid ~10 kilometers in diameter struck the Yucatan peninsula. (Note: this event was formerly known as the Cretaceous – Tertiary (K-T) extinction, but that terminology is in decline within the scientific community). This extinction event is famous since it is the one that eliminated the dinosaurs (with the exception of the ancestors of modern birds). As with the Permian extinction, the elimination of so many species shifted the evolutionary landscape for the remaining species, and the result was a burst of speciation that appears rapid when viewed in geological time. Significantly for our own species, following the KPg extinction event is a burst in mammalian speciation, as small mammals that survived the event diverge and fill niches left empty by the dinosaurs. Without this event, the trajectory of mammalian evolution would certainly look very different. </p>

<h3>Clearing the deck, and re-filling the niches</h3>
<p>One interesting fact to note is that biological features that make a species resistant to usual, sporadic extinction are not necessarily the same features that will be useful during a mass extinction event. While species are continually under selection at the local level, there is no mechanism for (pre) selection to survive a mass extinction. As such, only species that happen to have the right combination of traits will survive, and often spread widely after a mass extinction. These so-called “disaster species” are usually generalists, and will later be displaced by more specialized species as they arise.  As such, where sporadic extinction allows for more gradual turnover in species, mass extinction events are major “resets” of evolution that can radically shift what constitutes “well adapted” in a geological eyeblink. For mammals at the KPg boundary, small body size and an omnivorous diet (including the ability to scavenge detritus) were the “winning” combination of traits that allowed them to survive where larger, more specialized animals (think <em>Tyrannosaurus rex</em>) could not. From this rather humble station, mammals would come to dominate the world’s ecosystems over the coming eons – including a lineage that would someday lead to our own species. Far from only a destructive force, extinction is a powerful mechanism to allow evolutionary innovation, and one that was of significant importance to us. </p>

<h3>For further reading: </h3>
<p>Meredith, R.W. et al (2011). Impacts of the Cretaceous Terrestrial Revolution and KPg Extinction on Mammal Diversification. Science 334; 521-524. </p>

<p>Fastovsky, D.E.  (2005). The Extinction of the Dinosaurs in North America. GSA Today (15); 1052-5173. </p>

<p>Benton, M.J. and Twitchett, R.J. (2003). How to kill (almost) all life: the end-Permian extinction event. TRENDS in Ecology and Evolution (18); 358-365. </p>
]]></content:encoded>
        <pubDate>Tue, 14 Aug 12 05:00:13 -0700</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Aug 14, 2012 05:00</dc:date>-->
      </item>
            <item>
        <title>Series: Southern Baptist Voices: Evolution and Death</title>
        <link>http://biologos.org/blog/series/southern&#45;baptist&#45;voices&#45;evolution&#45;and&#45;death&#45;series?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/series/southern&#45;baptist&#45;voices&#45;evolution&#45;and&#45;death&#45;series?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>This exchange brings together related essays on death in light of evolution and Scripture from Southern Baptist theologian Dr. John Laing. Laing argues that evolutionary theory requires death to play a central role in the creation of new life, but sees Scripture depicting death only &quot;as an invader, disturber of peace, and a force of evil.&quot;  A BioLogos response is given by Dr. Jeff Schloss.</description>
        <content:encoded><![CDATA[<p class="caption-right"><img src="http://biologos.org/uploads/static-content/Schloss_headshot.jpg" alt="" height="361" width="260"  /></p>

<h3>The Evolutionary Role of Death & Natural Evil</h3>

<p>In addition to providing a general theological critique of the endemic—as opposed to post-hoc or intrusive—<em>origins</em> of death in the natural world, John Laing’s imminently fair-minded essay also takes theological aim at the <em>role</em> death and natural evil play in the evolutionary diversification of life.  It is one thing to say that death is primordial; it is another to view it not just as an ancient byproduct, but as the central means of creation. The understandable theological uneasiness expressed by John and many others about this issue ultimately rests not just on an understanding of God’s creative activity, but also on a particular representation of evolution.  In this regard John makes two important claims:</p>

<ul><li>a) “…natural selection, with its emphasis on a natural state characterized by competition for limited resources and a general struggle for survival, is the primary means by which speciation takes place…”</li>
<li>b) “death actually functions as a mechanism for life.  Death plays a vital role in natural selection by rooting out weakness and driving evolutionary development.”</li></ul>

<p>For reasons I discussed in the previous section, it is not entirely clear that death constitutes an evil that is incommensurate with divine activity.  However, the fact is that the above depiction of evolution—which is not unique to John amongst public commentators and is largely commensurate with Darwin’s own views—does not adequately portray current discussions within evolutionary biology.  There are three problems with this portrayal that I’d like to address in turn—three aspects of evolutionary theory that need to be better understood.</p>

<p>First, while there is no uncertainty about common descent or about natural selection as a cause of evolutionary change, there is considerable discussion over the extent to which natural selection is “the primary means” by which speciation takes place.  For one thing, there are manifold other agents of evolutionary change: drift, gene flow, systems of mating, mutation itself unfiltered by selection.  A tremendous amount of variation may be adaptively neutral, being invisible to natural selection.  For another thing, some claim that evolution proceeds most rapidly and speciation occurs most precipitously in the relaxation of selection—when ecological times are good and the culling effects of the environment are minimized. We may see this in the contingency-driven formation or colonization of a new habitat or the exploitation of a new resource that does not displace previous variants.  Or, speciation events or species-level innovations may be the results of chromosomal rearrangements or symbiogenesis that are not the cumulative results of selection. Finally, there exist manifold and admittedly controversial proposals that are critical of neo-Darwinism as a whole, claiming that natural selection may be a necessary, but is neither a sufficient nor a primary cause of large-scale evolutionary change.<sup>1</sup></p>

<p>Second, notwithstanding Darwin’s formulation of natural selection in terms of competitive struggle as (accurately) cited by John, the modern understanding of evolution and competition is considerably more differentiated and complicated.  For one thing, competition is neither a necessary nor a sufficient condition for natural selection.  <em>Natural selection</em> is formally defined as the differential reproduction of <a href="http://en.wikipedia.org/wiki/Genotype">genotypes</a> (or information.)  Some sets of genes are replicated with greater efficiency than are others.  <em>Competition</em> is formally defined as the negative impact of two organisms (or two species) on one another’s fitness.  You can have all sorts of competition that does not result in natural selection.  And importantly, you can have differential reproduction by natural selection without the negative fitness impacts of competition.  Colonists to a new under-exploited habitat, or two species that are partitioned onto separate resources in a way that minimizes competition might well have some variants that leave more offspring than others without displacing them. This is natural selection. </p>

<p>Indeed, imagine an infinite habitat with non-limiting resources and no competition at all: as long as there were adaptively salient mutations, there would be natural selection—some of those new genotypes would reproduce more effectively than others. Competition, to whatever extent it exists in nature, is a consequence of finitude and not a necessary precondition of natural selection.  And finally, the role of cooperation in evolution has itself been massively reconsidered in recent years.  It would not be entirely unfair to say that on the basis of mathematical models and empirical data, the proposal that cooperation “is now seen as a primary creative force”<sup>2</sup> and a “fundamental principle of evolution”<sup>3</sup> has moved from being a cult-alternative to a widely accepted paradigm.  Indeed, cooperation and increasing scales of cooperative interdependence are seen not only as a formative <em>process</em> but also as a recurring <em>product</em> of evolutionary change, which may even be viewed as “progress.”<sup>4</sup> A biologically significant and theologically salient thematic trend across major evolutionary transitions, is that cooperative interdependence itself – and the wondrous properties of life mentioned in the first installment of this essay – seem to be amplified through selection.<sup>4</sup> Through evolution, God may be seen to confer life and confer it in greater abundance.</p>

<p>Third, the claim that “death drives evolutionary development” turns out to be problematic.  Recent discussions of death and senescence (organismic decay) between various branches of the biosciences are spirited and fascinating.  One of the vexing characteristics of living creatures is the internalization of death and senescence: even if an individual is not killed by external forces, it will die from the inside out—virtually no species is immortal.<sup>6</sup> One account of this—the rate of living theory of senescence—understands it not in terms of selection for reduced mortality but in terms of biophysical or allometric constraints relating rate of metabolism to rate of wearing out. Though it views senescence differently, the prevailing <em>evolutionary theory of senescence</em>, with several variants, does not affirm death or decay—at least the kind of death and decay that is intrinsic to organismic development—as a prerequisite to evolution by natural selection either.<sup>7</sup></p>

<p>Indeed, internalized death is viewed not as <em>driving</em> but as <em>deriving</em> from, not as a necessary requirement for but as a byproduct of, natural selection.  Specifically, mutations or traits with detrimental impacts later in life may not be eliminated by or may even be favored by selection if their contribution to reproduction early in life is sufficient.  Now, neither theory completely dismisses the shaping role of death.  Under certain but not all conditions, differential mortality may have adaptive import (and it is not even the longer-lived organisms that always have adaptive advantage).  Extrinsic sources of death may also shape the internalization of death.<sup>8</sup> But the view that death drives evolution does not adequately represent emerging scientific understanding of the relationship between natural selection and senescence. </p>

<p>Scientifically death <em>does not</em> “drive” evolution.  And theologically, although neither evolutionary change nor ecological interaction “solve” the ultimate puzzle of human death, they may nevertheless mitigate the proximal existence of creaturely death by amplifying the complexity and vibrant abundance of living forms.</p>

<p>Darwin famously closed <em>The Origin</em> by observing “There is a grandeur in this view of life, with its several powers, having been originally breathed by the Creator into a few forms or into one…from so simple a beginning endless forms most beautiful and most wonderful have been, and are being evolved.”<sup>9</sup> Unlike John, I do not see anything in evolutionary theory to reduce, and I see much to augment the sense of grandeur and (for that matter) the appreciation of sheer goodness—both earthly and divine—evoked by the wonders of the living world.</p>

<p>Yet grandeur and goodness are not perfection.  My Dad is still dying.  I still wince at the suffering of clearly sentient animals.  And, truth be told, I tremble at the biblical images of universal herbivory: even metaphors are metaphors of something, and in the case of biblical revelation, that something can be taken to be real and important.  So like John, I confess to profound gratitude tempered with a lingering unease at the state of nature. Though I believe in a Fall, this unease is not rationally relieved by attributing to an Adam the present state of all nature.  Nor is it resolved by the various alternative considerations I’ve described and which,  taken together, seem to have considerable merit but not sufficiency.  Notwithstanding, I thankfully affirm that “I have known the goodness of the Lord in the land of the living.” And I look to the day when we may say together, “My ears had heard of You, but now my eyes have seen You.” (Job 42:5)</p>

<h3>Notes</h3>
<p class="date">1. E.g., Salthe, S. 2008. “An Anti-Neo-Darwinian View of Evolution.” <em>Artificial Life</em>. 14:231-233;  David Depew and Bruce Weber (eds). <em>Darwinism Evolving: Systems Dynamics and the Genealogy of Natural Selection</em>. 2004. MIT Press<br />
2. Michod, Richard and Denis Roze. 2001. “Cooperation and Conflict in the Evolution of Multicellularity.” <em>Heredity</em>. 86:1-7. Page 2<br />
3. Nowak, Martin.  <em>Evolution, Games, and God: The Principle of Cooperation</em>. Martin Nowak & Sarah Coakley, eds. Forthcoming from Harvard University Press.<br />
4. Sigmund, Karl and Eörs Szathmáry. 1998. “Merging Lines and Emerging Levels.” <em>Nature</em>. 392: 439-441.<br />
5. John Maynard Smith and Eörs Szathmáry.  1998.  <em>The Major Transitions in Evolution</em>. Oxford University Press.  Brett Calcott & Kim Sterelny (eds).  2011. <em>The Major Transitions in Evolution Revisited</em>.  MIT Press.<br />
6. “Virtually” is an important qualifier: while senescence has been documented in nearly all organisms examined, there are some cell lines and species in which this may not be the case.<br />
7. Williams, George.  1957. “Pleiotropy, Natural Selection, and the Evolution of Senescence.” <em>Evolution</em>. 11:398-411.<br />
8. This relationship is complex and not invariant.  E.g., Williams, Paul and Day, Troy. 2003.  “Antagonistic Pleiotropy, Mortality Source Interactions, and the Evolutionary Theory of Senescence.”  <em>Evolution</em>. 57(7): 1478-1488.<br />
9. Darwin, Charles.  1876. <em>The Origin of Species By Means of Natural Selection, or the Preservation of Favored Races in the Struggle for Life</em>.  6th Edition.  John Murray.  p. 429.</p>]]></content:encoded>
        <pubDate>Sun, 12 Aug 12 05:00:10 -0700</pubDate>
        <dc:creator>Jeffrey Schloss</dc:creator>
        <!--<dc:date>Aug 12, 2012 05:00</dc:date>-->
      </item>
            <item>
        <title>Becoming Human: New Insights from Genome&#45;wide Functional Genomics</title>
        <link>http://biologos.org/blog/becoming&#45;human&#45;new&#45;insights&#45;from&#45;genome&#45;wide&#45;functional&#45;genomics?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/becoming&#45;human&#45;new&#45;insights&#45;from&#45;genome&#45;wide&#45;functional&#45;genomics?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>We live in exciting times for a geneticist: more and more genomes are being sequenced, and more and more novel genome&#45;wide analyses are being performed to shed light on what all those newly&#45;determined sequences mean.</description>
        <content:encoded><![CDATA[<p>We live in exciting times for a geneticist: more and more genomes are being sequenced, and more and more novel genome-wide analyses are being performed to shed light on what all those newly-determined sequences mean. These genomic studies powerfully support the <a href="http://www.asa3online.org/PSCF/2010/08/20/genesis-and-the-genome-genomics-evidence-for-human-ape-common-ancestry-and-ancestral-hominid-population-sizes/" target="_blank">common ancestry</a> of humans with other forms of life, such as chimpanzees and other great apes. These studies have also measured ancient human population size dynamics with increasingly precise methods, indicating that (biologically at least) we <a href="http://biologos.org/blog/does-genetics-point-to-a-single-primal-couple">do not descend solely from a single ancestral couple</a>. These topics are ones that I have commented on frequently here, since—especially in our scientifically-informed age—the church must come to terms with these important issues. </p>

<p>Recently, an elegant and powerful experiment was done to further investigate a question of interest to many evangelicals: how is it that we are so <em>different</em> from our closest biological relative (the chimpanzee) when our DNA is so very <em>similar</em>? Even when using estimates that maximize the differences, our genomes are 95% identical. The conclusion, that I have <a href="http://biologos.org/blog/evolution-and-the-origin-of-biological-information-part-6">discussed here in the past</a> is that a dispersed set of numerous small changes can have large effects on the form and function of an organism. Of course, small changes are what evolution specializes in: tinkering here and there, one mutation at a time, as we have <a href="http://biologos.org/blog/understanding-evolution-the-evolutionary-origins-of-ic-part-4">directly observed in laboratory experiments</a>. Before we discuss how this pivotal new study was done, however, a brief review of how genes work is in order. </p>

<h3>Review: gene structure and function</h3>
<p>If you’ve been following the ongoing <em>Understanding Evolution</em> series here at BioLogos, you will recall that we discussed <a href="http://biologos.org/blog/understanding-evolution-is-there-junk-in-your-genome-part-2">gene structure</a> and function not long ago, in the context of discussing non-functional DNA sequences (so-called “junk DNA”): </p>

<blockquote><p>Genes have a typical structure (obviously simplified here somewhat). First off, there is the actual DNA sequence that specifies the protein product sequence (the so-called “coding sequence”, shown in blue). This sequence is usually broken up into segments in mammalian genes, and these sequences are spliced together when the DNA sequence of the gene is transcribed into a “working copy” called mRNA – a short duplicate of the code that can be used by the cell’s machinery to actually build the specified protein. </p>

<p class="caption-center"><img src="http://biologos.org/uploads/static-content/becoming_human_fig_1.jpg" alt="" height="326" width="576"  /></p>
 
<p>In addition to the actual coding sequences, other sequences are needed to tell the cell when and where certain genes should be transcribed into mRNA. Every cell in an organism has the same genes in their chromosomes, but not all are transcribed. Using different genes in different combinations is what makes cells take on distinct roles – for example, cells in your small intestine need different genes (for absorption of nutrients) than do cells of the immune system (for fighting off pathogens). Regulatory sequences make sure any given cell type has the right genes transcribed and made into protein products.  Some of these sequences are part of the mRNA transcript (shown in red), and others are not transcribed but only part of the chromosomal DNA sequence (such as the “promoter” region that directs the enzymes responsible for making the mRNA transcript (shown in blue).</p> </blockquote>

<p>With this background in mind, we can now extend our understanding slightly further. DNA in cells is “packaged up” when not in use by winding it around a class of proteins called histones. This packaging keeps the DNA in a compact form, and it is useful in helping cells prevent genes they don’t need from being transcribed. For any given chromosome - which is one long strand of DNA – some regions will be packed away (and the genes there not transcribed), while other regions are unpacked (less tightly associated with histones) with the genes there actively undergoing transcription. The open regions allow for transcription because enzymes and other proteins needed for the process can gain access to the DNA there. </p>

<h3>Comparing gene transcription across species at the genomic level</h3>
<p>Because of the overwhelming similarity between the human and chimpanzee genomes (and the even greater similarity when examining only their protein-coding regions) it has long been hypothesized that changes in “where and when” genes are transcribed will be a major player in what makes our two species different (in contrast to the idea that we are different because of the relatively tiny changes in the coding regions of our genes). From an evolutionary point of view, there are a few ways to explore how differences in gene transcription arise once species go their separate ways, such as when our ancestors parted ways with our last common ancestor with chimps around 4-6 million years ago. The main idea is to compare the same cell type in both species: human skin cells versus chimp skin cells, for example. Determining what specific genes are transcribed (or not) in human cells and comparing the results to chimpanzee cells gives us an idea of how gene transcription differences arose in the two lineages since they last shared a common ancestor. The challenge, up until now, is that there was no easy way to indentify the changes in regulatory DNA that led to those differences in transcription. The problem arises because of the overwhelming similarities between our genomes: changes in transcription due to changes in DNA sequence are hard to find simply by looking for sequence differences, since in most cases the differences will be very small. There are also many small differences between our genomes that have no effect on gene transcription, so we cannot simply look for any difference at all. What we need is a way to identify <em>which</em> small changes led to differences in gene transcription. </p>

<h3>Old hypotheses, new technology</h3>
<p>Back in 2008, a method for addressing this issue was devised. As we have seen, DNA undergoing transcription is “unpacked” and accessible to enzymes. Researchers have long known about a certain enzyme, called DNAse I, that can cut exposed DNA but leave histone-packaged DNA alone. This means that DNA from any given cell type can be cut using this enzyme specifically at “DNAse I hypersensitive sites” (DHS’s) where regulatory DNA is unpackaged and a nearby gene is being transcribed. While this technique is decades old, what is new is a way to then go on to sequence the DNA next to each of these sites. This requires what is known as “next-generation” or “deep” DNA sequencing methods that can use a linker sequence to attach to the DNAse I cut sites and then amplify and sequence individual DNA fragments attached to the linker. Since we have the entire genome sequence of humans and chimps it is then trivial to take the sequencing results and map them to either genome. The results are a detailed map of what chromosome regions are unpacked and regulating transcription in each cell type. These maps can then be compared with related species across entire genomes. </p>

<p>It was only a matter of time before these powerful methods were applied to the human-chimp question, and the <a href="http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1002789">first results became available last month</a>.  The research group was of course interested in differences between the two species, and the results are fascinating. The researchers looked at several different cell types, and found similar results in all cases. The results for any given gene fall into one of several categories when compared to the human-chimp (H-C) last common ancestor:</p>

<ul><li>No differences in regulatory DNA relative to the H-C last common ancestor (1259 genes)</li>
<li>Gain of regulatory DNA in humans relative to the H-C last common ancestor (836 genes)</li>
<li>Loss of regulatory DNA in humans relative to the H-C last common ancestor (286 genes)</li>
<li>Gain of regulatory DNA in chimpanzees relative to the H-C last common ancestor (676 genes)</li>
<li>Loss of regulatory DNA in chimpanzees relative to the last common ancestor (211 genes)</li></ul>

<p>While it was not surprising to find a significant percentage of unchanged genes, it was interesting to note the large percentage of <em>differences</em> in regulatory DNA, despite the overwhelming genomic similarity between the two species. Small changes had a large impact on gene regulation. The researchers went on to examine the new regulatory regions they had identified, and found that they showed evidence of being under natural selection. These mutations had not only brought change, but provided an advantage to their hosts. </p>

<p>These results underscore a few important points: </p>
<ul><li>Species become different because differences accumulate in both lineages once a common ancestral population splits into two. The differences we see in modern species are due to changes both species have accumulated over time.</li>
<li>Tweaking the regulation of numerous genes appears to be a widespread mechanism for generating evolutionary novelty. Both gaining and losing regulatory sequences is common. </li>
<li>These gains or losses in regulatory DNA require only very small changes at the DNA sequence level, but they can have profound impacts on how genes are transcribed. </li>
<li>These changes appear to be widespread in genomes, and able to accrue in short evolutionary timescales. </li>
<li>Small changes are exactly the sort of thing that evolution is known to be able to accomplish easily, one mutation at a time. </li>
<li>These small changes bear the marks of natural selection, indicating that they were selected for as they arose. </li>
<li>Anyone who wishes to call these differences “insignificant” will have to contend with the observation that the biological differences we observe between humans and chimpanzees are significant. </li>
<li>Small, incremental changes at the genomic level fit nicely with the fossil evidence for human evolution, which, though fragmentary, indicates gradual changes in skeletal morphology over the same timescale. </li></ul>

<p>Of course, this study is just the beginning, and future studies are sure to examine and compare additional cell types found in humans and our evolutionary cousins. These results have already added to the troubles of antievolutionary groups that wish to portray the differences between us as too great for evolutionary mechanisms to bridge. I suspect these troubles will only worsen in the coming years as these new techniques come into their own. </p>

<h3>For further reading: </h3>
<p>Shibata Y, Sheffield NC, Fedrigo O, Babbitt CC, Wortham M, et al. (2012). Extensive Evolutionary Changes in Regulatory Element Activity during Human
Origins Are Associated with Altered Gene Expression and Positive Selection. <em>PLoS Genetics</em> 8(6): e1002789. doi:10.1371/journal.pgen.1002789</p>

<p>http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1002789</p>
]]></content:encoded>
        <pubDate>Fri, 27 Jul 12 05:00:11 -0700</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Jul 27, 2012 05:00</dc:date>-->
      </item>
            <item>
        <title>A BioLogos Response to William Dembski, Part 2</title>
        <link>http://biologos.org/blog/southern&#45;baptist&#45;voices&#45;a&#45;biologos&#45;response&#45;to&#45;william&#45;dembski&#45;part&#45;ii?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/southern&#45;baptist&#45;voices&#45;a&#45;biologos&#45;response&#45;to&#45;william&#45;dembski&#45;part&#45;ii?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>I now respond directly to Dembski’s analysis of “Darwinism” and how BioLogos differs from the view he critiques.</description>
        <content:encoded><![CDATA[<h3>Is Darwinism Theologically Neutral?</h3>
<img src="http://biologos.org/uploads/static-content/darrel_large.jpg" alt="" height="312" width="250" style="float:right;margin:0px 0px 0px 10px;" />

<p>With the first part of my essay as background, I now respond directly to Dembski’s analysis of “Darwinism” and how BioLogos differs from the view he critiques.  He begins by posing a question, “Is Darwinism theologically neutral?”  He goes on to describe two contrasting views: </p>

<ol><li>Those of the agnostic philosopher, Michael Ruse, who claims Christianity and Darwinian evolution are compatible and,</li>
<li>Those of individuals who hold a young earth view and claim Christianity and Darwinian evolution are incompatible.</li></ol>

<p>Dembski suggests that Ruse, in order to claim compatibility (neutrality), redefines Christianity.  I agree he does this.   Without belief in the bodily resurrection of Jesus, Christianity is dead and, as Paul says, Christians are of all people most to pitied. (1 Corinthians 15:19). </p>

<p>Dembski also states that a belief in common descent can be consistent with Christian faith (i.e. neutral), and here I agree with Dembski again. As he points out, Christianity is not defined by the mechanism that God chose to use in accomplishing his purposes in creation.</p>

<p>So far we are on exactly the same page.  Ruse claims Darwinism is neutral, but only by departing from Christian theology.  Some young earth creationists claim Darwinism is not neutral, but they focus on common descent and this, by itself, does not depart from Christian theology.  However, as Dembski quickly notes at that point in his essay, he has not yet carefully defined Darwinism and Christianity.   He goes on to describe what he considers to be some non-negotiables of each.  </p>
 
<p>Dembski suggests that among the core non-negotiable principle beliefs of Christianity are: (a) divine creation, (b) reflected glory, (c) human exceptionalism, and (d) bodily resurrection of Jesus.  I agree that these are non-negotiables; take away any of these beliefs and you no longer have Christianity.  We’re still on the same page.</p>

<p>What about non-negotiables of “Darwinism?”   They are, he says, (a) common descent, (b) natural selection, (c) human continuity, (d) methodological naturalism.  With that, he proceeds to analyze each.</p>

<h3>Common Descent</h3>

<p>Common descent, which today is at the core of the biological sciences, was a fundamental tenet for Darwin.  Dembski sees no significant theological problem with common descent. “By themselves [the Christian non-negotiables described above] allow that God might have specially created living forms or brought them about via an evolutionary process,” he writes. He sees no theological conflict with this Darwinian tenet, even though he does not subscribe to it.</p>

<h3>Natural Selection</h3>
<p>Dembski indicates that natural selection, as defined by Darwin, is in tension with two of the four Christian non-negotiables—divine creation and reflected glory.  His primary concern is that Darwin’s view of natural selection is non-teleological.   Insomuch as this is true (and Darwin’s views on teleology are complex and contested), I agree.  If Darwin’s non-teleological views were correct, this would be incompatible with some of the non-negotiables in Christianity.  As Dembski says, “to say that something is undetectable is not to say that it doesn’t exist....”  I concur that Darwin had no scientific basis for concluding that the evolutionary process did not end up exactly the way that God intended in the beginning.  If Darwin reached non-teleological conclusions on the basis of his data then he allowed his philosophical and theological commitments to influence his conclusions.  Like Dembski, I believe God <em>did</em> call our existence into being; there <em>is</em> a teleological basis for our presence on earth.  We are by no means an accident and to the extent that Darwin thought we are, he was wrong.</p>
 
<p>So far, I see no significant difference between BioLogos and the non-negotiables presented by Dembski.  Intriguingly, however, Dembski goes on to state, “it seems odd, given C1—[divine creation], that God would create by Darwinian processes, which suggest that unguided forces can do all the work necessary for biological evolution.”   Here we part company.  As indicated in my introductory comments above, I believe that the natural activity of God is not less divine than the supernatural activity of God, something borne out by the Scriptures themselves.  This does not mean that I think that no supernatural activity occurred in life’s history; I just don’t see why it would be “odd” if God chose to create life’s diversity through his natural activity.  How would we know what is odd as it relates to the activity of God?  The only reliable source of what is odd and what is not is God’s revelation through his Word.  But I see no scripturally-based rationale for determining the expected ratio of natural vs. supernatural divine activity in creation.  Scripture is silent on the issue and so far at least, science is as well—other than demonstrating that many biological features and mechanisms previously thought by some to be evidence of supernatural action can now be explained via God’s regular activity—that associated with his natural laws.  For the present, I think it is best to withhold judgment about the extent to which God suspends his ongoing regular activity in favor of miraculous supernatural activity in the history of the creating life’s diversity.</p>

<p>I now come to the most fundamental point of disagreement between the Intelligent Design movement and BioLogos.  Dembski states:</p>

<blockquote><p>Given that science is widely regarded as our most reliable universal form of knowledge, the failure of science to provide evidence of God, and in particular Darwin’s exclusion of design from biological origins, undercuts C2 [reflected glory]. </p></blockquote>

<p>Furthermore, he also writes:</p>

<blockquote><p> If God does occlude his purposeful activity in nature, that raises a tension with (C2), which states that the world clearly reflects God’s glory (Psalm 19) and that this fact should be evident to all humanity (Romans 1). </p></blockquote>

<p>I don’t think that God occludes or masks his activity.  Thanks in no small part to science, we now recognize that there are “signposts” (C.S. Lewis’s term) all over the place directing our attention to the existence of our Creator.  The question is whether those “signposts” can be developed into scientific hypotheses that can be scientifically tested in a manner that parallels how one goes about testing the hypothesis that smoking causes cancer or that DNA is the genetic material.  The heavens <em>do</em> declare the glory of God (Psalm 19), and, “ever since the creation of the world, his eternal power and divine nature, invisible though they are, <em>have</em> been understood and seen through the things he has made” (Romans 1:20).  God has not occluded his activity.  It <em>is</em> all around us.  From the birth of a baby to the birth of a star; from a universe which is mathematically coherent to one which is exquisitely fine-tuned; from our sense of shame to our ability to recognize the good and the right—from all of these and so much more, we see signposts all pointing to our Creator.   Individually each hints at something beyond ourselves.   Together they <em>shout out</em> with the message of God’s glory.   Still, can they be tested scientifically—in a manner that parallels whether penicillin kills bacteria or the mitochondrion is the cell’s energy factory—to determine whether God is at work in them?  Can intelligent people who choose not to believe come up with feasible alternative explanations that do not include God?  Sure, they do it all the time and, as Romans 1 tells us, they have been doing it from the beginning of human existence. </p>
 
<p>Given the way that God has worked through his regular natural activity, why should we expect to be able to develop a test for the activity of God?  God is always active, but scientific testing of God’s activity would require a “control” where God is not active.  How can we conduct an experiment which studies the “presence vs. absence of God” when God is always present as sustainer as well as creator?</p>

<h3>Human Continuity  </h3>
<p>Dembski quotes from Darwin’s <em>Descent of Man</em>:</p>

<blockquote><p>The difference in mind between man and the higher animals, great as it is, certainly is one of degree and not of kind. We have seen that the senses and intuitions, the various emotions and faculties, such as love, memory, attention, curiosity, imitation, reason, etc., of which man boasts, may be found in an incipient, or even sometimes in a well-developed condition, in the lower animals.</p></blockquote>

<p>Even if all that Darwin says here were more or less true, it would still say nothing about that which makes humans truly exceptional, because—our linguistic and cognitive abilities aside—what makes us truly exceptional has less to do with biology than with the fact that God chose to enter into a unique relationship with humankind.  Dembski paraphrases an ideologically strict Darwinian view of man as "not worthy of special divine attention, and with no prerogatives above the rest of the animal world." <em>But Christians recognize that our material ordinariness is radically transformed by the presence and promises of God. </em> Exactly as with the people of Israel among the nations, so humans among the animals: our special identity rests in the free choice of the Creator to give us his himself and his name. If we recognize that human specialness rests on God’s fellowship with and call upon us, and that we—alone of all creatures—are enabled by God to bear his image in the world, then anything Darwin said about the physical continuity between humans and animals is irrelevant.  In the way that matters most, we are not continuous with animals. For philosophical and theological reasons, Darwin did not recognize this. Darwin, I believe, was wrong.  I, like Dembski and like Southern Baptists in general, am not a Darwinist.</p>

<h3>Methodological Naturalism</h3>
<p>Dembski defines methodological naturalism in the following way:</p>

<blockquote><p>The physical world, for purposes of scientific inquiry, may be assumed to operate by unbroken natural law.</p></blockquote>

<p>He goes on from there to write that if one assumes that miracles were performed in salvation history, then it would seem to be arbitrary to assume that God would not also perform miracles in natural history as well.  Although I do not rule out the occurrence of miracles in natural history, the purpose of miracles in the biblical narrative seems to stem from God’s desire to reveal himself to humankind, reminding us of and guiding us in our relationship with him and each other.   Given that, I do not see why it is arbitrary to think that God may not have used miracles to accomplish his purposes in nature before humans were around to observe them.</p>

<p>However, I strongly disagree with Dembski that if one believes God has worked primarily through natural processes in creation as a whole, this makes belief in the resurrection less tenable.  The two ought not to be tied together in this way, especially since I have already stated that I reject the notion that the ordinary and regular processes of creation are any less God’s—than what I have called supernatural processes.  One’s conclusion about the mechanism of creation has no logical extension to one’s views about the historicity of the bodily resurrection of Jesus.</p>

<p>In conclusion, I think Dembski takes some steps that are both theologically unnecessary and scientifically unjustified in rejecting what careful study tells us about God’s marvelously ordinary processes of creation: ordinary because they follow his natural laws so faithfully, marvelous because they have resulted in a world of complex and beautiful life.  On the other hand, I agree with Dembksi that Darwin’s views were not theologically neutral.  Darwin’s views on teleology, human exceptionalism, and miracles were not compatible with Christianity.  Quite simply, this is why I do not consider my views to be Darwinian and why I am not a Darwinist.</p>

<h3>For further reading:</h3>

<p>The BioLogos website offers many resources to acquaint readers with the incredibly strong scientific evidence for common descent and other facets of evolutionary biology.</p>
See <a href="http://biologos.org/blog/understanding-evolution-an-introduction-to-populations-and-speciation">Understanding Evolution: An Introduction to Population and Speciation</a>, by Dennis Venema (note the link to other articles in this series on the right hand sidebar), and <a href="http://biologos.org/blog/series/evidences-for-evolution">Evidences for Evolution</a>, by David Kerk.  Also, for three very fine podcasts, consider viewing these <a href="http://biologos.org/blog/author/luoma-kelsey">posts</a> by Kelsey Luoma.</p>]]></content:encoded>
        <pubDate>Thu, 03 May 12 13:12:04 -0700</pubDate>
        <dc:creator>Darrel Falk</dc:creator>
        <!--<dc:date>May 03, 2012 13:12</dc:date>-->
      </item>
            <item>
        <title>Understanding Evolution: Theory, Prediction and Converging Lines of Evidence, Part 1</title>
        <link>http://biologos.org/blog/understanding&#45;evolution&#45;theory&#45;prediction&#45;and&#45;evidence&#45;1?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/understanding&#45;evolution&#45;theory&#45;prediction&#45;and&#45;evidence&#45;1?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>In science, we don’t really know the true way things actually work. What we have are theories—broad explanatory frameworks supported by experimentation, which we can use to make testable predictions about the natural world.</description>
        <content:encoded><![CDATA[<p class="intro">One of the challenges for discussing evolution within evangelical Christian circles is that there is widespread confusion about how evolution actually works. In this (intermittent) series, I discuss aspects of evolution that are commonly misunderstood in the Christian community. In this post, we explore how evolution is a theory in the scientific sense, how it is supported by converging lines of evidence, and how it can make accurate predictions about the natural world, using whale evolution as an example.</p>

<h3>Evolution: just a theory</h3>
<p>One game that my (young) children like to play is a guessing game where both players select a character from among many choices, and by process of elimination, tries to guess the character the other has selected. Questions like “does your character have red hair? glasses?” etc., are used to narrow down the possibilities. Once you have guessed correctly which character your opponent has selected, you can perfectly predict the answer to every question thereafter (and a good many parents likely prolong the questioning to keep the hopes of victory alive for their children).  When considered separately, the individual features of each character—glasses, brown hair, purple hat, and so on—mean almost nothing, since they could be features shared with other characters in the game. Only the convergence of multiple features is indicative of a good guess, and the accuracy of that guess is put to the test every time a new question is asked.</p>

<p>A good theory is something like this: an educated guess, based on and consistent with all past work on the topic to date.  It allows you to predict how future tests should pan out. In the guessing game, there are limited options to choose from (so the analogy, like all analogies, eventually breaks down). In science, we don’t really know the true way things actually work. What we have are <em>theories</em>—broad explanatory frameworks supported by experimentation, that make sense of our current collection of facts—that we can use to make testable predictions about the natural world. All theories in science are provisional in that they are not complete descriptions of how the world actually works and are subject to future revision; but at the same time they are robust frameworks that can be used to predict how experiments should behave with almost boring regularity. So, far from the colloquial usage of “theory” as speculation, “just a theory” is high praise in science.</p>

<p>The current understanding of evolutionary theory in all its scope and diversity is far more complex than Darwin himself could have ever envisaged. (As a geneticist, I’ve often wished I could have a cup of tea with him to show him how far his theory has grown, especially given his confusion about how heredity worked.) Our understanding of how evolution works has grown by leaps and bounds since the 1850s. What is remarkable is just how much Darwin got “right” given his time and place. His main hypotheses—that species descend from ancestral forms through descent with modification, that and natural selection acting on heritable variation is a significant force in that process—remains the core of modern evolutionary theory. We’ve added a lot of detail since then (population genetics, kin selection, neutral evolution/genetic drift, symbiosis, horizontal gene transfer, molecular exaptation, and so on),  but Darwin’s core ideas have produced a wealth of successful predictions. They were a very good “guess” that continues to pay rich scientific dividends.</p>

<p align="center"><img src="http://biologos.org/uploads/static-content/whale_breaching.jpg" alt="" height="379" width="570"  /></p>

<h3>Whale evolution: an example of converging lines of evidence</h3>

<p>One of the things I personally find quite enjoyable about evolutionary theory is the counter-intuitiveness of some of the predictions it makes. One example that is a personal favorite, and one I often use to illustrate how evolution makes sense of converging lines of evidence, is cetacean (whale) evolution. Let’s set up the “problem” that evolutionary biology forces upon us:</p>

<ul><li>Modern cetaceans are <em>mammals</em> – they nourish their young in utero through a placenta, give birth to live young, and feed newborns with milk – all features of standard mammalian biology.</li>
<li>Mammals are <em>tetrapods</em> – organisms with four limbs. Mammalian life shows up in the fossil record as an innovation within tetrapods, so mammals are “nested within the set” of tetrapod forms. Not all tetrapods are mammals (amphibians, for example) but all mammals are tetrapods.</li>
<li>Tetrapods are by and large <em>terrestrial</em> creatures. Having four limbs for locomotion is a distinctly land-based adaptation.</li></ul>

<p>The “problem”, of course, is that modern whales are emphatically not terrestrial, nor do they have four limbs – they have two front flippers and a tail, with no hind limbs in sight. Yet they are mammals, which forces evolution’s hand as it were. Evolution thus is dragged, under protest, to the prediction that modern whales, as mammals, are descended, with modification, from ancestral terrestrial, tetrapod ancestors. 
Instantly this prediction raises a host of uncomfortable questions: where did their hind limbs go? How did they acquire a blowhole on the top of their heads when other mammals have two nostrils on the front of their faces? How did they transition to giving birth in the water? What happened to the teeth of the baleen whales? What happened to the hair characteristic of mammals? and so on. In some ways, evolutionary thinking about whales creates more difficulties than it appears to solve.</p>

<p>And yet, these difficulties are the stuff of science. If indeed our “educated guess” of terrestrial, tetrapod ancestry for whales is correct, the evidence will show that these transitions, challenging though they may seem, did indeed occur on the road to becoming “truly cetacean”. </p>

<h3>Going out on a limb</h3>
<p>Anyone who has seen a modern whale skeleton in a museum and noted it carefully may have noticed that though whales lack hind limbs, they do have a bit of bone back there where the hind limbs ought to be. While this is suggestive of a <em>vestigial</em> characteristic (a feature in a modern organism that has a reduced role relative to the role the structure played in an ancestral species), it’s hardly a smoking gun for evolution. Still, it’s consistent with the idea.</p>

<p>When we look at the cetacean fossil record, we also see forms suggestive of a progressive loss of hind limb function and structure over time, as David Kerk and Darrel Falk have elegantly <a href="http://biologos.org/blog/evidences-for-evolution-part-2b-the-whales-tale">explained before</a>. Again, if one were resistant to evolutionary explanations, it would be possible (if a bit strained) to interpret these creatures as having been created directly as we find them in the fossil record. The facts that we do not see these forms in the present day, and that they seem to blur the distinctions between terrestrial tetrapods and whales might make one a bit uncomfortable, however.</p>

<p>Recent work on cetacean embryogenesis (how whales and their relatives develop from fertilized eggs into fully-formed baby whales) has shed even more light on the issue for modern species, however. Dolphin embryos actually have four limbs early in their development, as well as a few facial hairs, just as any good mammal should have. The hind limbs and hairs are lost later in development, and work on the molecular signaling events that halt hind limb growth and cause the limb bud to regress into the body wall have now been worked out in some detail. Moreover, early in dolphin development the nostrils are distinct and on the front of the face, and only fuse into a blowhole and migrate to the top of the head later in development. Early dolphin embryogenesis is distinctly mammalian and uncannily tetrapod-like.</p>

<h3>… and passing the test</h3>
<p>Taken in isolation, these facts about whales are interesting trivia. Taken together, however, they begin to form a picture entirely consistent with the prediction that modern whales are derived from terrestrial ancestors. The true strength of evolution as a scientific theory for the origin of whales is this: not that we can prove it, (for no theory is ever proven in science due to its permanently provisional nature), nor that we have full access to every bit of data we would like (consider how fragmentary the fossil record is, for example), but rather that we haven’t been able to <em>disprove</em> it yet, despite our best efforts. Descent with modification remains a productive educated guess that grows stronger with each investigation.</p>

<p>In the next post in this series, we’ll explore some additional lines of evidence for cetacean evolution that further illustrate the predictive power of evolutionary theory.</p>

<h3>For further reading</h3>
<p><a href="http://biologos.org/blog/evidences-for-evolution-part-2a-the-whales-tale">Evidences for Evolution, Part 2a: The Whale's Tale</a><br />
<p><a href="http://biologos.org/blog/evidences-for-evolution-part-2b-the-whales-tale">Evidences for Evolution, Part 2b: The Whale's Tale</a><br />
J. G. M. Thewissen, M. J. Cohn, L. S. Stevens, S. Bajpai, J. Heyning, and W. E. Horton, Jr. (2006). Developmental basis for hind-limb loss in dolphins and origin of the cetacean bodyplan. Proceedings of the National Academy of Sciences 103 (22), 8414–8418. <a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1482506/pdf/zpq8414.pdf" target="_blank">available freely online</a>.</p>
]]></content:encoded>
        <pubDate>Thu, 08 Mar 12 04:00:11 -0800</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Mar 08, 2012 04:00</dc:date>-->
      </item>
            <item>
        <title>Speciation and Macroevolution</title>
        <link>http://biologos.org/blog/speciation&#45;and&#45;macroevolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/speciation&#45;and&#45;macroevolution?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>A common challenge to evolutionary theory is that while life does indeed change over time (what is known as microevolution), no one has ever seen one species evolve into another species (macroevolution).</description>
        <content:encoded><![CDATA[<p align="center"><iframe src="http://player.vimeo.com/video/36997631?title=0&amp;byline=0&amp;portrait=0" width="570" height="428" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></p>

<p>In our last two BioLogos podcasts, we looked at the question of <a href="http://biologos.org/blog/where-are-the-transitional-fossils">transitional fossils</a> and the <a href="http://biologos.org/blog/where-is-the-genetic-evidence-for-evolution">genetic evidence for evolution</a>. In our final installment of this three part series, we move on to the question of speciation and macroevolution. A common challenge to evolutionary theory is that while life does indeed change over time (what is known as microevolution), no one has ever seen one species evolve into another species (macroevolution). For example, no one has seen a dog evolve into something other than a dog. Because speciation has never been observed, and because science is based on observation, evolution cannot be considered scientific.</p>

<p>In fact, examples of speciation <em>have</em> been observed by scientists. We must also remember that we are able to observe just a tiny window of the long history of life on Earth, and the fact that any speciation has been noted at all is impressive indeed.</p>

<h3>Transcript</h3>
<p>It’s pretty clear to most of us that life can change over time.  For those who aren’t convinced, just take a quick trip to your local animal shelter.  Each of the dog breeds there, from the Great Dane to the Chihuahua, descended from a single ancestral population.  As you probably already know, that ancestral group was a wolf-like species. -How did these drastic changes take place?  Well, basically, genetic variation within that original population was acted upon by selective forces.  Now, just to be clear, the selection at work here wasn’t natural.  It was the result of breeding done over hundreds of years. But the basic principle is the same.  Genetic variation plus some sort of selection results in genetic change.  This is evolution.</p>

<p>For the most part we are ok with accepting this.  Yet many people still have a problem with the Theory of Evolution. Those suspicious of evolutionary Theory generally split evolution into two categories.  Instead of arguing that evolution is completely impossible, they will say something like, “I know microevolution is real, but I just can’t accept macroevolution.”</p>

<p>Kent Hovind, an especially outspoken opponent of evolutionary theory, often makes this argument in his presentations:</p>

<blockquote><p>“Maybe you’re talking about macroevolution. That’s where an animal changes into a different kind of animal. Nobody’s ever seen that. Nobody’s seen a dog produce a non-dog. I mean you may get a big dog or a little dog, I understand, but you’re going to get a dog, okay?” (<a href="http://www.youtube.com/watch?v=pYtrjvMX2Zk" target="_blank">source</a>)</p></blockquote>

<p>But what does this mean?  What is the difference between micro and macroevolution anyway, and why is one of them ok while the other is condemned?</p>

<p>Well, like many terms used in the evolution debate, the definitions tend to differ depending on who you talk to.  This can make rational discussion difficult. Most opponents of evolution, like Kent Hovind, say that macroevolution refers to one “type” or “kind” of organism evolving into another “kind”.  Microevolution, they might say, is evolution within a “kind”. Evolution of one dog breed into another, they would say, is microevolution.  Evolution of a “dog into a non-dog”, as Hovind puts it, would be “macroevolution.”’</p>

<p>One big problem with this argument is that “kind” is not clearly defined.  It is a subjective term referring to organisms that seem similar to each other.  Now, this is a definition that can easily be manipulated.  And it doesn’t work very well when asking scientific questions. Because there is disagreement about what they actually mean, the terms micro and macroevolution aren’t often used in scientific literature.  But when biologists do refer to “macroevolution”, most define it as “evolution above the species level”.</p>

<p>(Sources: <a href="http://ib.berkeley.edu/courses/ib200a/lect/ib200a_lect26_Lindberg_macroevolution.pdf" target="_blank">http://ib.berkeley.edu/courses/ib200a/lect/ib200a_lect26_Lindberg_macroevolution.pdf</a>, <a href="http://www.nescent.org/media/NABT/" target="_blank">http://www.nescent.org/media/NABT/</a>, <a href="http://evolution.berkeley.edu/evosite/evo101/VIADefinition.shtml" target="_blank">http://evolution.berkeley.edu/evosite/evo101/VIADefinition.shtml</a>, <a href="http://www.nhm.ac.uk/hosted_sites/paleonet/paleo21/mevolution.html" target="_blank">http://www.nhm.ac.uk/hosted_sites/paleonet/paleo21/mevolution.html</a>)</p>

<p>In other words, at the smallest scale, macroevolution is the development of a new species. This definition is more useful because you can objectively determine whether two organisms are members the same species, but “kind” has no specific definition.</p>

<p>So what does “species” mean anyway?  How is it different from “kind?”  Well, the term species can be hard to define.  Life is complex, and categorizing it into clear groups can be tricky.  The currently accepted definition of species comes from what we call the “biological species concept.”  Basically, the biological species concept says that a species is made of populations that actually or potentially interbreed in nature.</p>  

<p>So, two populations that cannot mate to produce successful offspring are by definition separate species. Now, this definition doesn’t always work.  For example, when you have a species that reproduces asexually, finding the boundaries between species can be a little tricky.  But in most cases it does a pretty good job.  It’s a good way to objectively determine where one species stops and another one begins.</p>  

<p>The Biological Species Concept is especially useful when you have two species that look and act very similar.  Eastern and Western Meadowlarks are a good example of this.  They look almost exactly the same.  But they cannot interbreed successfully.  Therefore, they are separate species. This definition also helps when we study evolution.  Where can we draw the line between microevolution and macroevolution?  Well, it’s never easy, but having a working definition of this thing called a species helps out a lot.  When enough genetic changes accumulate in a population, eventually it loses the ability to mate with others of its species.  Then, by definition, it becomes a new species.  In other words, macroevolution has occurred.</p>

<p>As we just discussed, many critics claim that macroevolution can never happen—one species can never cross over to become another one. This statement might sound valid, but a little bit of investigation shows that it is not well supported by evidence.  For one thing, the only difference between micro and macroevolution is scope.  When enough micro changes accumulate, a population will eventually lose its ability to interbreed with other members of its species.  At this point, we say that macroevolution has occurred.</p>

<p>The same processes—random mutation and natural selection—cause both micro and macro evolution.  There are no invisible boundaries that prevent organisms from evolving into new species.  It just takes time. Usually, the amount time required for macroevolution to occur is significant—on the order of thousands or millions of years. That’s why you don’t normally see brand new forms of life appear every time you step out your front door.  And that’s also why some people think that speciation never happens at all.</p>

<p>But sometimes macroevolution doesn’t take that much time.  In fact, the evolution of new species sometimes happens so quickly that we can actually see it take place!  Let’s look at a few recent examples.</p>

<p>Biologists Peter and Rosemary Grant had been studying finches since 1973.  They lived on an island called Daphne Major in the Galapagos.  It was here that they conducted their studies.  When they first began their studies, only two species of Finch lived on Daphne Major: the medium ground finch and the cactus finch.  But, in 1981, Peter and Rosemary noticed that an odd new finch had immigrated to the island.  It was a hybrid, a mix between a cactus finch and a medium ground finch.  It didn’t quite fit in with the other birds.  The odd misfit had an extra large beak, an unusual hybrid genome, and a new kind of song.  But somehow he was still able to find a mate.  The female was also a bit of a misfit and had some hybrid chromosomes of her own.  So their offspring were very different from the other birds on the island.</p>  

<p>Rosemary and Peter continued to carefully watch the odd hybrid line.  They wondered if the birds would become isolated from the other finch species on the island or if they would eventually re-assimilate.  After four finch generations, a drought killed off many of the birds on Daphne Major.  In fact, almost the entire hybrid line was exterminated.  Only a brother and sister pair remained.  The two family members mated with each other, producing offspring that were even more unique than their parent line.  From that point on, as far as biologists Peter and Rosemary could tell, the odd population of finches mated only with each other. They were never seen to breed with the cactus finches or the medium ground finches on the island. The finches with the strange song had become a brand new species.</p>

<p>(Source: <a href="http://www.pnas.org/content/106/48/20141.full" target="_blank">http://www.pnas.org/content/106/48/20141.full</a>)</p>

<p>Another example of speciation, or macroevolution, also took place on an island—this time, on the beautiful Portuguese island of Madeira.  According to history books, the Island of Madeira was colonized by the Portuguese about 600 years ago.  The colonizers brought with them a few unassuming European House Mice, which they accidentally left on the island. It’s also possible that a group of Portuguese House Mice was dropped off later on.</p>  

<p>Recently, Britton-Davidian, an evolutionary biologist at University Montpellier 2 in France, decided to collect samples of the Madeira mice and see how those original populations had changed over time. What she found was surprising. Rather than just one or two species of mouse, she found several.  In only a few hundred years, the original populations of Mice had separated into six genetically unique species.  The first mouse populations had 40 chromosomes altogether.  But the new ones were quite different. Each new variety had its own unique combination of chromosomes, which ranged in number from 22 to 30.</p>  

<p>What seems to have happened is that, over time, the mice spread out across the island and split into separate groups.  Madeira is a rugged volcanic island with crags and cliffs.  So it makes sense that this would have been easy to do.  There were many isolated corners for the mice to occupy.  Over time, random mutations occurred—some chromosomes became fused together.</p> 

<p>Now, In order to reproduce successfully, both parents must have the same number of chromosomes.  So when a population develops a chromosome fusion, suddenly that group cannot mate with the other members of its species.  It becomes a brand new species.  That’s exactly what happened on Madeira. And because of this phenomenon, 6 new species evolved from just 1 or 2 in an extremely short amount of time.</p>

<p>(Sources: <a href="http://onlinelibrary.wiley.com/doi/10.1111/j.1365-294X.2009.04345.x/full" target="_blank">http://onlinelibrary.wiley.com/doi/10.1111/j.1365-294X.2009.04345.x/full</a>, <a href="http://www.genomenewsnetwork.org/articles/04_00/island_mice.shtml" target="_blank">http://www.genomenewsnetwork.org/articles/04_00/island_mice.shtml</a>, <a href="http://www.nature.com/hdy/journal/v99/n4/full/6801021a.html" target="_blank">http://www.nature.com/hdy/journal/v99/n4/full/6801021a.html</a>)</p>

<p>Another fascinating example of macroevolution was recently observed by researchers at Pennsylvania State University. This time, two species combined to make a single new one.  In 1997, researchers at Penn State noticed a fruit maggot infestation on some recently introduced Asian Honeysuckle bushes. They decided to investigate the Honeysuckle fly population and determine how it was related to the other flies nearby. When they examined the honeysuckle fly’s genes, the researchers discovered something interesting.  The fly appeared to be a hybrid of two native species—the blueberry fly and the snowberry fly.</p>  

<p>But the honeysuckle fly’s genetic material was not an exact balance between that of the two parent species.  The ratios of DNA varied from fly to fly.  This showed the researchers that the honeysuckle flies had been breeding amongst themselves for many generations—probably at least 100.  Also, they found that the Honeysuckle Flies were very unlikely to breed with any other species. They bred only on their host Honeysuckle plants.  So they weren’t likely to mix with flies that lived on a different host.</p>
  
<p>According to Dr. Dietmar Schwarz, post-doctoral researcher in entomology, as far as the researchers can tell, “The new species is already reproductively isolated.  They seem to be in a niche on the brushy honeysuckle where the parent species cannot compete."</p>  

<p>(Source: <a href="http://www.psiee.psu.edu/news/2005_news/july_2005/hybrid_insects.asp" target="_blank">http://www.psiee.psu.edu/news/2005_news/july_2005/hybrid_insects.asp</a>)</p>

<p>While this kind of speciation—two species hybridizing to create a new one—seems odd, it is a significant mechanism of macroevolution.  And it’s especially common in plants. In fact, a new species of weed recently arose this way in Great Britain. In 1991, Richard Abbot, a plant evolutionary biologist from St. Andrews University, noticed an unusual weed growing next to a car park in York.  He discovered that the species, an unassuming scruffy weed, was a natural hybrid between the common groundsel and the Oxford ragwort, a plant that was introduced to Britain only 300 years ago.  The York Groundsel lives in a different niche, or microenvironment, than either of its parent species. It is able to breed and reproduce, but only with other York Groundsel plants.  It cannot successfully reproduce with any other species, including either of its parent plants.  Thus, by definition, the York Groundsel is its own new species.</p> 

<p>(Sources: <a href="http://www.nerc.ac.uk/publications/planetearth/2003/summer/sum03-evolution.pdf" target="_blank">http://www.nerc.ac.uk/publications/planetearth/2003/summer/sum03-evolution.pdf</a>, <a href="http://www.nature.com/hdy/journal/v69/n5/abs/hdy1992147a.html" target="_blank">http://www.nature.com/hdy/journal/v69/n5/abs/hdy1992147a.html</a>)</p>

<p>So, as we have seen, macroevolution is an established process. Usually it takes thousands of years to occur, but sometimes we get lucky and catch it in the act. When Kent Hovind said that, “no one has ever seen a dog produce a non-dog” he was technically quite correct.  But this statement infers that macroevolution means a drastic and obvious change from one type of organism into another.  Those who think this way believe that macroevolution is something like two dogs breeding to suddenly produce a cat, or two guinea pigs mating to produce a mouse.</p>

<p>But this is not how evolution works at all.  Over millions of years, a dog-like animal may indeed evolve into a something that looks completely unlike a dog.  However, this is not something that we would expect to be able to observe.  It just takes too much time.  To put the scale of evolution into perspective, consider this.  If the average lifespan of a United Stated citizen, 78 years, were a single minute, then single-celled life has been around for nearly 100 years.   On this scale, all we get to see is one minute.  And even in that time frame we sometimes see new species forming.  God’s time is not our time and we tend to forget this. What we do expect to observe is a very slow step-by-step accumulation of tiny genetic changes that eventually result in speciation.  And indeed, as we discussed today, this is exactly the sort of evidence revealed in nature.</p>

<p>So, macroevolution is not a “myth” by any means.  It is supported by a vast amount of evidence.  That evidence includes the fossil record and genetics, as discussed in previous BioLogos podcasts, and, when we get lucky, direct observation of speciation.  God, being who God is, could conceivably have created species out of thin air in a single instant.   But what if instead if God created and sustained the process by which new species are created?   Does that make him less powerful or less "god-like"?  Is it somehow more God’s process if it happened in an instant, than it is if it happened over a long period of time?   Presumably even if it happened in an instant, it would still happen by some sort of process—only faster.</p>  

<p>God’s time is not our time, and perhaps it’s a good idea for all of us to simply stand back in amazement while God does God’s work in God’s time through God’s process.</p>]]></content:encoded>
        <pubDate>Thu, 23 Feb 12 03:59:24 -0800</pubDate>
        <dc:creator>Kelsey Luoma</dc:creator>
        <!--<dc:date>Feb 23, 2012 03:59</dc:date>-->
      </item>
            <item>
        <title>Possibilities and Second Chances</title>
        <link>http://biologos.org/blog/possibilities&#45;and&#45;second&#45;chances?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/possibilities&#45;and&#45;second&#45;chances?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>In today’s video, Dr. Rick Colling states that evolution is not merely the imposition of death and destruction and survival of the fittest. Rather, it is about second chances.</description>
        <content:encoded><![CDATA[<p align="center"><iframe src="http://player.vimeo.com/video/37257770" width="570" height="321" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></p>

<p class="intro">Today's video is courtesy of filmmaker Ryan Pettey, director/editor of Satellite Pictures, and features Dr. Rick Colling, biologist and author of <em>Random Designer</em>.</p>

<p>In today’s video, Dr. Rick Colling states that one of the biggest difficulties in communicating compatibility between evolution and faith is a misunderstanding of what evolution is. Evolution is not, he says, about the imposition of death and destruction and survival of the fittest. Rather, it is about second chances. Our bodies contain thousands of genes, which duplicate like a computer back-up copy and can serve as raw material. When an organism encounters adverse environmental condition, this raw material can be used to help adapt and survive.</p>

<p>“God is so creative," says Colling, "that he’s actually put into place a mechanism to start doing these gene changes in advance before they’re even needed. And God has given us a second change through the evolutionary process of creating duplicate genes that give rise to new raw material that give rise to new possibilities, and that really more accurately describes the process of evolution. It’s redemption, it’s possibility, and it’s hope.”</p>]]></content:encoded>
        <pubDate>Wed, 22 Feb 12 10:17:28 -0800</pubDate>
        <dc:creator>Richard Colling</dc:creator>
        <!--<dc:date>Feb 22, 2012 10:17</dc:date>-->
      </item>
            <item>
        <title>Is There “Junk” in Your Genome? Part 2</title>
        <link>http://biologos.org/blog/understanding&#45;evolution&#45;is&#45;there&#45;junk&#45;in&#45;your&#45;genome&#45;part&#45;2?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/understanding&#45;evolution&#45;is&#45;there&#45;junk&#45;in&#45;your&#45;genome&#45;part&#45;2?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>Despite their somewhat mysterious nature, transposon sequences make up a staggering 45% or more of our genome. They are the perfect parasites: using their host to provide resources, they maintain a “lifestyle” so simple that replication is essentially their only feature.</description>
        <content:encoded><![CDATA[<p class="intro">One of the challenges for discussing evolution within evangelical Christian circles is that there is widespread confusion about how evolution actually works. In this (intermittent) series, I discuss aspects of evolution that are commonly misunderstood in the Christian community. In this second of several posts on “junk DNA”, we explore how small, autonomous DNA sequences called transposons have shaped mammalian genomes for worse, and for better.</p>

<p>As we saw in the <a href="/blog/understanding-evolution-is-there-junk-in-your-genome-part-1">last post</a>, only a small fraction of the human genome appears to be subject to selection (on the order of 5-6%). The rest appears free to mutate freely without consequence to mammalian biology, and as such constitutes good evidence that it performs no particular function. An additional line of evidence in favor of non functionality in the human genome is the observation that a large fraction of our genetic material is made up of what are known as mobile genetic elements, or “transposons.” These little snippets of DNA are well known and well studied in many organisms, including humans. So, what are they, and what are they up to?</p>

<h3>Along for the ride, but looking out for number 1</h3>
<p>Non-biologists are usually somewhat taken aback when they learn about transposons.  Transposons are small segments of DNA inserted into in the genomes of many organisms that are little worlds unto themselves: they have a few genes that serve only to copy themselves and move themselves to new locations in a genome. That’s it! On the scale of biodiversity, transposons are less life-like even than viruses. They are the perfect parasites: using their host to provide resources so they can replicate themselves, and with a “lifestyle” so simple that replication is essentially its only feature. Their origins, like the origins of viruses, is somewhat of a mystery.</p>

<p>Despite their somewhat mysterious nature, transposon sequences make up a staggering 45% or more of our genome. That’s about 1.4 billion DNA base pairs of our genetic material that is recognizable as functional transposons or their mutated, fragmentary remains. Not surprisingly, nearly all transposon sequences in the human genome are not under selection – they are free to accumulate mutations. These mutations have no effect on us since they do not alter any function we require.</p>

<h3>Rags to riches: converting transposons to functional sequences</h3>
<p>Despite their parasitic nature, sometimes the host species can exploit transposons as a source of genetic novelty. The ability of transposons to copy and spread themselves around in genomes raises the intriguing possibility that they can acquire a function if they land in the right chromosomal area. While it is difficult (though not impossible) for a transposon to acquire a function as gene <em>coding</em> sequence (i.e. becoming a host protein product), it is comparatively easy for a transposon to pick up a function as a <em>regulatory</em> sequence: a segment of DNA that directs when and where a certain host gene product should be made. Transposons contain regulatory sequences for their own genes already, and these sequences can potentially interact with regulatory sequences in the host genome.</p>

<p>Perhaps a review of gene structure and function would be helpful at this point. Genes are portions of the long DNA sequences that make up chromosomes (each chromosome is one very long DNA molecule). As we have seen above, a good proportion of these sequences are either transposons or the defective fragments of transposons, as well as other DNA that is not under selection and is free to mutate. Interspersed in this sea of non-selected sequences are genes: segments of chromosomes that code for protein products that carry out functions within the cell: enzymatic functions, structural functions, and so on. These sequences stand out because they are subject to selection, and thus do not change at the same rate as sequences that are free to mutate (as we discussed previously).</p>

<p>Genes have a typical structure (obviously simplified here somewhat). First off, there is the actual DNA sequence that specifies the protein product sequence (the so-called “coding sequence”, shown in blue). This sequence is usually broken up into segments in mammalian genes, and these sequences are spliced together when the DNA sequence of the gene is transcribed into a “working copy” called mRNA – a short duplicate of the code that can be used by the cell’s machinery to actually build the specified protein.</p> 
 
<p align="center"><img src="http://biologos.org/uploads/static-content/junk_fig_2_1.jpg" alt="" height="323" width="570"  /></p>

<p>In addition to the actual coding sequences, other sequences are needed to tell the cell when and where certain genes should be transcribed into mRNA. Every cell in an organism has the same genes in their chromosomes, but not all are transcribed. Using different genes in different combinations is what makes cells take on distinct roles – for example, cells in your small intestine need different genes (for absorption of nutrients) than do cells of the immune system (for fighting off pathogens). Regulatory sequences make sure any given cell type has the right genes transcribed and made into protein products.  Some of these sequences are part of the mRNA transcript (shown in red), and others are not transcribed but only part of the chromosomal DNA sequence (such as the “promoter” region that directs the enzymes responsible for making the mRNA transcript (shown in blue).</p>

<p>So, what happens when a transposon inserts into the regulatory sequence of a gene? In many cases, this mutation (the insertion event) will cause a problem (perhaps the gene is no longer transcribed in the right way, for example). In some cases, however, the gene can tolerate such an insertion. Regulatory DNA is more able to accept changes than is coding sequence DNA, so it is quite possible that an insertion may not harm the function of a gene.</p> 
 
<p align="center"><img src="http://biologos.org/uploads/static-content/junk_fig_2_2.jpg" alt="" height="326" width="570"  /></p>

<p>In some cases, sequences from the transposon can participate in the regulation of the neighboring gene. If these changes are beneficial, as they sometimes are, then the transposon sequences involved in regulation come under selection. Some parts of the transposon mutate away beyond recognition, and the useful bits remain since they, now being under selection, are not (as) free to mutate. The end result is a gene that has co-opted a fortuitous event (a transposon insertion) and, through mutation and selection, honed it to serve a new function (altered regulation of its product). This is an example of <em>exaptation</em>, the conversion of one function to another through mutation and subsequent selection. In this case the old function (a “self-serving” transposon) has had a portion of its sequence exapted to become part of the host regulatory DNA.</p>

<p>Recent work comparing 29 different mammals has shown there are about 280,000 examples of exapted transposon fragments in mammalian genomes. Despite this large number, the absolute fraction of human DNA that falls into this category is tiny: of our 3 billion base pairs of DNA, only about 7 million are the detectable remnants of  exapted transposons. The vast majority of transposon and transposon fragments in the human genome (as we mentioned, totaling around 1.4 billion base pairs) are not under selection and are free to mutate without affecting any function.</p>

<h3>The genomic recycling bin</h3>
<p>So, transposons are at once a good example of non-functional DNA in genomes (indeed, nearly half of our own genome is made up of them), and an example of how evolutionary processes can convert non-functional DNA into functional DNA through mutation and selection. While I did not discuss exapted transposons in my previous series, this is another clear example of how evolution can produce novel information within the genome: by “recycling” small amounts of its junk to produce new functions. Note well, however: the fact that a small fraction of transposons have been exapted into functional sequences does not “confer” functionality on all transposons. We see the signs of selection on only a tiny minority, and even then typically only on fragmentary remains.</p>

<p>In the next installment of this series, we’ll examine another form of non-functional DNA present in genomes: processed pseudogenes.</p>

<h3>For further reading</h3>
<p class="date">International Human Genome Sequencing Consortium, (2001). Initial sequencing and analysis of the human genome. Nature 409, 860-921. 
http://www.nature.com/nature/journal/v409/n6822/full/409860a0.html<br /><br />
Lindblad-Toh, K., et al. (2011). A high-resolution map of human evolutionary constraint using 29 mammals. Nature 478, 476-482. 
http://www.nature.com/nature/journal/v478/n7370/full/nature10530.html</p>
]]></content:encoded>
        <pubDate>Fri, 03 Feb 12 05:36:04 -0800</pubDate>
        <dc:creator>Dennis Venema</dc:creator>
        <!--<dc:date>Feb 03, 2012 05:36</dc:date>-->
      </item>
            <item>
        <title>Behold, the Man</title>
        <link>http://biologos.org/blog/behold&#45;the&#45;man?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/behold&#45;the&#45;man?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>Anyone interested in the faith and science conversation knows that there currently is considerable, heated debate over the problem of “Adam.” I’d like to suggest that this argument is in significant ways misplaced.</description>
        <content:encoded><![CDATA[<p>Anyone interested in the faith and science conversation knows that there currently is considerable, heated debate over the problem of “Adam.”  Genetic studies conclude that the modern human population could not have arisen from only one primal couple.  Excellent Biblical scholars and theologians from various perspectives argue over whether “Adam” should be thought of as part of a population of early humans, or as an entirely non-historical figure.   And of course, many Christians continue to insist that scientific data that appears to contradict a particular Biblical / theological interpretation of human origins should be rejected out of hand.</p>

<p>I’d like to suggest that this argument is in significant ways misplaced.  The participants in this debate all seem to agree that what makes us “human” can be defined by genes and population studies.  There is a pressing need for them to conform theology to population genetics, or to conform population genetics to theology, because the story of our genes is implicitly equated with the story of what it means to be “human.”  The hypothesis that there was a “first human” – a capital-A <em>“Adam”</em> – can be tested in our genes.</p>

<p>But “genes” do not make us “human.”  What makes us “human” is the irreducible phenomena of all of our material and immaterial being as persons.</p>

<p>Nothing we observe in the universe is flat.  By “flat” I mean having only one aspect or “layer.”  Consider, for example, an apple.  What <em>is</em> it?  Is it the fruit of an apple tree? The seed-carrier – the potentiality – of new apple trees?  Beautiful and delicious?  Skin, flesh, and core?  Water and organic molecules?  Caloric energy and roughage?  Hydrogen, oxygen, and carbon?  Physical laws? All of these things comprise some of what we mean by “apple,” but none of them are what an “apple” <em>is</em>.  The reality that is “apple” cannot be reduced to any one of its aspects or layers.</p>

<p>It is possible to think of these aspects or layers hierarchically, with “higher” layers that emerge from “lower” ones.  Physical laws emerge from quantum probabilities; molecules emerge from physical laws; seeds, skin, flesh and core emerge from complex arrangements of molecules; beauty and delight emerge from the connection of skin, flesh and core to human sense perception;<sup>1</sup> “apple” emerges from all of this (and more) combined with the human cultural experience of this thing we call “apple.”</p>

<p>Notice that some “layers” can impinge or “supervene” on lower ones – for example, human sense perception and cultural experience <em>do something</em> to this thing confronting the subject in order for it to <em>become</em> “apple.”  But notice also that “apple” is not merely a cultural construction.  The word or signifier “apple,” of course, could be arbitrary, but there is an objective reality to the thing signified.  The layer of human sense perception and cultural experience supervenes upon, but does not create, the lower-order reality from which it emerges.</p>

<p>Sociologist Christian Smith draws these strands together in a critical realist framework in his excellent book <a href="http://www.amazon.com/gp/product/0226765911/ref=as_li_ss_tl?ie=UTF8&tag=thebiofou06-20&linkCode=as2&camp=1789&creative=390957&creativeASIN=0226765911">What Is a Person?: Rethinking Humanity, Social Life, and the Moral Good from the Person Up</a><img src="http://www.assoc-amazon.com/e/ir?t=thebiofou06-20&l=as2&o=1&a=0226765911" width="1" height="1" border="0" alt="" style="border:none !important; margin:0px !important;" />.  In a critically realist approach to culture and human personhood, Smith suggests, “[h]uman beings do have an identifiable nature that is rooted in the natural world, although the character of human nature is such that it gives rise to capacities to construct variable meanings and identities….” Culture is a social construction, but it is not <em>merely</em> a social construction.  Human beings are social, but they are not <em>subsumed</em> by the social.  The reality we inhabit is “stratified”:  it includes both the reality of individual conscious human agents and the reality of the social structures that emerge from the cultures created by those agents.  These “personal” and “cultural” layers of the world interact with each other dynamically, each continually informing and changing the other.</p>

<p>Smith’s approach is helpful, but perhaps it does not go far enough.  For Smith, as for critical realists in general, the phenomena of human culture remain subject to some degree of granular disaggregation, at least analytically.  A phenomenological approach suggests that no “thing” can be broken into components and still comprise that “thing” – the genes that encode for apple trees are not apple seeds, apple seeds are not apple trees, and apple trees are not apples.  The critical realist framework of stratification, emergence, and supervenience functions as a very useful heuristic device, but to describe what an apple is, we must approach the phenomenon of “apple” in its fullness.  To know whether something falls into the kind “apple,” we must hold an ideal of everything an apple is, and compare the subject to the ideal.</p>

<p>And because of the transcendence of the ideal concept of “apple,” we can begin to speak of the relative excellence of particular instantiations of apples.  What is an “excellent” apple?  What distinguishes the excellent apple from a poor one?  We can only ask such questions if “apple” means something more than the particular physical specimen in hand, whether firm, sweet and tart, or bruised and sour.</p>

<p>The same is true of human “persons.”  We can say almost nothing about a “person” merely by observing genes, because genes are not “persons.”  Populations genetics studies can provide models of the dispersion of genes through groups of biological entities, but they can tell us nothing whatsoever about when the first “human person” emerged.  Indeed, for population genetics <em>qua</em> population genetics, there simply are no “persons” – for this is a science of the movement of genes, not a philosophical, sociological, or theological description of “persons.”</p>

<p>So what of “Adam?”  It is often suggested that in Romans 5:12 Adam is a type of Christ.  But, in fact, in Paul’s thought, as well as for the early Church Fathers, <em>Christ</em> is the type, the <em>typos</em>, a notion derived from the “stamp” or “seal” on an official document.  There is a hint in Romans 5 of a truth that would only become clarified later in Christian theology – that the pre-incarnate Christ, the second person of the Trinity, always <em>was</em>.  Whereas Arius declared that “there was a time when he [Christ] was not,” Nicea established the orthodox Christology of Christ’s eternal sonship.  Thus Christ is and was the Redeemer, the one for whom creation was made and in whose death and resurrection creation always finds its fulfillment.  Adam’s failure was that he went against type – he did not conform to Christ but rather tried to become something else, and thereby the true nature of humanity was broken.</p>

<p>Is the <em>typos</em> of Christ reducible to a set of genes?  Surely not.  It resides not in genes or in any other created thing but rather in the Triune life of God Himself.  We might speak, in a roughly analogical way, of ideas we hold in our minds – say, the idea of a perfect Bordeaux, ruby-red, silky, smoky, plummy, luxurious.  We could labor to instantiate that idea, combining genes and <em>terroir</em> and water and light and care, and perhaps we might achieve it, to the point where upon taking a sip we exclaim, “this – <em>this</em> – is Bordeaux.  Nothing else is worthy of that name.”</p>

<p>This is what God said of Adam, when he gave him breath and a name.  It is not something that God said of any other creature, even apparently some creatures that a modern population geneticist or paleoanthropologist might designate as ancestrally human based on genes or bones.  Yet <em>that</em> Adam, and each of us <em>in</em> that Adam, fail to participate fully and unreservedly in the true nature of the true human, the nature of Christ.  And so Pontius Pilot, an unwitting prophet, said of Christ:  “behold, the man” (John 19:5, KJV).  And so also Paul invites us to see:  the sinful man, the broken seal, the first created Adam; and the true type, the seal of humanity’s future, the perfect Adam, the Christ.  None of this is about the definitions and categories of modern science, as helpful and important as they may be for the progress of scientific thought.  It is, rather, about the fullness of what it means to be human.</p>

<h3>Notes</h3>
<p class="date">1. Human sense perception, of course, is an emergent property of an even more complex set of relations that give rise to the human “person.”</p>]]></content:encoded>
        <pubDate>Tue, 31 Jan 12 04:00:05 -0800</pubDate>
        <dc:creator>David Opderbeck</dc:creator>
        <!--<dc:date>Jan 31, 2012 04:00</dc:date>-->
      </item>
            <item>
        <title>The Fall</title>
        <link>http://biologos.org/blog/the&#45;fall?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/the&#45;fall?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>The lyrics begin by painting a picture of the Fall as something in which each person has participated: “The fruit (of the Fall of man) is seen in every eye and every hand.”</description>
        <content:encoded><![CDATA[<p align="center"><iframe width="560" height="315" src="http://www.youtube.com/embed/EccGm1JOQ8E" frameborder="0" allowfullscreen></iframe></p>

<p>The song entitled “The Fall” by Gungor is from the artists’ latest album Ghosts Upon the Earth. The lyrics begin by painting a picture of the Fall as something in which each person has participated as indicated by the assertion that “the fruit (of the Fall of man) is seen in every eye and every hand.”   After reflecting on the words, consider the discussion questions below.</p>

<h3>“The Fall” by Gungor</h3>
<p>The Fall, the Fall, Oh God, the Fall of man,<br />
The fruit is found in every eye and every hand,<br />
Nothing, there is nothing yet in truest form,<br />
We walk like ghosts upon the Earth,<br />
The ground it groans.</p>

<p>How long? How long will you wait?<br />
How long? How long till you save us all, save us all?</p>

<p>Turn your face to me; turn your face to me.<br />
Turn your face to me; turn your face to me.</p>

<p>The light, the light, the morning light is gone,<br />
And all that is left is fragile breath and failing lungs.<br />
The night, the night, the guiding night has come,<br />
Uniting lover with his bride more precious than the dawn.</p>

<p>How long? How long must we wait? </p>

<p>Turn your face to me; turn your face to me.<br />
Turn your face to me; turn your face to me.</p>

<h3>Questions</h3>

<p>1. By focusing only on the Fall as a historical event, have we consciously or unconsciously simplified it—almost removing ourselves from the story?</p>
<p>2.  Besides Genesis 3, what other Scripture has inspired the opening lines of this song?   Does the feeling evoked by these opening lines personalize that passage for you?</p>
<p>3.  Have you ever felt:  “the light, the light, the morning light is gone?”   Have you experienced night as “guiding?”  Who is the lover?  What Scripture informs these lines?</p>
<p>4.  Have you ever asked, “How long? How long?”   Have you heard the answer, “Turn your face to me. Turn your face to me?”</p>
<p>5.  Do you  agree that the story of Adam and Eve is your story, except for one important difference?  What is that difference for you? </p>

<p>Michael Gungor has also served as a pastor at the Bloom Church in Denver, Colorado.   Below we post an excerpt from a sermon he has given on his own personal journey and his views about science and Scripture. </p>

<p align="center"><iframe src="http://player.vimeo.com/video/35777838?title=0&amp;byline=0&amp;portrait=0" width="571" height="321" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></p>

<p>(To hear the entire sermon go to this <a href="http://bloomchurchdenver.com/#/gatherings" target="_blank">link</a> and scroll to sermon of March 8, 2009—“What Can We Learn About Jesus from Science?”) </p>]]></content:encoded>
        <pubDate>Sat, 28 Jan 12 05:31:14 -0800</pubDate>
        <dc:creator>Michael Gungor</dc:creator>
        <!--<dc:date>Jan 28, 2012 05:31</dc:date>-->
      </item>
            <item>
        <title>Beginning with the End in Mind</title>
        <link>http://biologos.org/blog/evolutionary&#45;convergence?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</link>
        <guid>http://biologos.org/blog/evolutionary&#45;convergence?utm_source=RSS_Feed&amp;utm_medium=RSS&amp;utm_campaign=RSS_Syndication</guid>
        <description>In today&apos;s video, Oxford physicist Ard Louis discusses the famous debate between renowned evolutionary biologists Stephen Jay Gould and Simon Conway Morris over the idea of evolutionary convergence.</description>
        <content:encoded><![CDATA[<p align="center"><iframe src="http://player.vimeo.com/video/33680427?title=0&amp;byline=0&amp;portrait=0" width="571" height="321" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></p>

<p class="intro">Today's video is courtesy of filmmaker Ryan Pettey, director/editor of Satellite Pictures and features physicist Ard Louis.</p>

<p>In today's video, Oxford physicist Ard Louis discusses the famous debate between renowned evolutionary biologists Stephen Jay Gould and Simon Conway Morris. Gould believed (and wrote in his book <em>Wonderful Life</em>) that if the "tape" of evolution were rerun, the chance that anything like human intelligence would emerge is essentially zero. In other words, humanity is here through random accident. Gould pointed to the work of Morris and fellow scientists in their research of the Burgess Shale as evidence for this view.</p>

<p>However, Morris himself disagrees, pointing to what is called evolutionary convergence. As Morris notes, there are numerous examples of identical features evolving multiple times throughout the history of life independently. Morris believes that if the tape of life were replayed, we would see something like humans emerge. A Christian might say, it looks like we were planned.</p>


<p>Some Christians might find Simon Conway Morris' viewpoint, with its implicit teleology, more attractive. Others, perhaps motivated by a high view of providence, may find Gould's emphasis on contingency equally congenial to their faith.  What do you think?</p>]]></content:encoded>
        <pubDate>Thu, 15 Dec 11 05:51:27 -0800</pubDate>
        <dc:creator>Ard Louis</dc:creator>
        <!--<dc:date>Dec 15, 2011 05:51</dc:date>-->
      </item>
      

      

    
  </channel>
</rss>