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Early bursts of body size and shape evolution are rare in comparative data

机译:在比较数据中很少出现身体大小和形状演变的早期爆发

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George Gaylord Simpson famously postulated that much of life's diversity originated as adaptive radiations-more or less simultaneous divergences of numerous lines from a single ancestral adaptive type. However, identifying adaptive radiations has proven difficult due to a lack of broad-scale comparative datasets. Here, we use phylogenetic comparative data on body size and shape in a diversity of animal clades to test a key model of adaptive radiation, in which initially rapid morphological evolution is followed by relative stasis. We compared the fit of this model to both single selective peak and random walk models. We found little support for the early-burst model of adaptive radiation, whereas both other models, particularly that of selective peaks, were commonly supported. In addition, we found that the net rate of morphological evolution varied inversely with clade age. The youngest clades appear to evolve most rapidly because long-term change typically does not attain the amount of divergence predicted from rates measured over short time scales. Across our entire analysis, the dominant pattern was one of constraints shaping evolution continually through time rather than rapid evolution followed by stasis. We suggest that the classical model of adaptive radiation, where morphological evolution is initially rapid and slows through time, may be rare in comparative data.
机译:乔治·盖洛德·辛普森(George Gaylord Simpson)著名地提出,生命的大部分多样性源于适应性辐射-或多或少同时存在着来自单一祖先适应性类型的多条线的同时发散。但是,由于缺乏大规模的比较数据集,识别适应性辐射已被证明是困难的。在这里,我们使用各种动物进化枝中体型和体型的系统发育比较数据来测试适应性辐射的关键模型,在该模型中,最初的快速形态演化随后是相对停滞。我们将该模型的拟合与单选择峰模型和随机游走模型进行了比较。我们发现对自适应辐射的早期爆发模型几乎没有支持,而其他两个模型(尤其是选择性峰模型)通常都得到支持。此外,我们发现形态进化的净速率与进化枝年龄成反比。最年轻的进化枝似乎发展最快,因为长期变化通常无法达到根据短时间尺度测得的速率所预测的差异程度。在我们的整个分析中,主导模式是持续塑造随着时间推移而不是快速发展然后停滞不前的制约因素之一。我们建议,在比较数据中,形态演化最初是快速而缓慢的随时间变化的自适应辐射的经典模型可能很少见。

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