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哺乳动物眼球形状的快速变化是由活动模式解释的。

Rapid Change in Mammalian Eye Shape Is Explained by Activity Pattern.

机构信息

School of Biological Sciences, University of Reading, Reading RG6 6BX, UK.

出版信息

Curr Biol. 2019 Mar 18;29(6):1082-1088.e3. doi: 10.1016/j.cub.2019.02.017. Epub 2019 Mar 7.

Abstract

The rate of morphological evolution along the branches of a phylogeny varies widely [1-6]. Although such rate variation is often assumed to reflect the strength of historical natural selection resulting in adaptation [7-14], this lacks empirical and analytical evidence. One way to demonstrate a relationship between branchwise rates and adaptation would be to show that rapid rates of evolution are linked with ecological shifts or key innovations. Here, we test for this link by determining whether activity pattern, the time of day at which species are active, explains rapid bursts of evolutionary change in eye shape. Using modern approaches to identify shifts in the rate of morphological evolution [7, 13], we find that over 74% of rapid eye-shape change during mammalian evolutionary history is directly explained by distinct selection pressures acting on nocturnal, cathemeral, and diurnal species. Our results reveal how ecological changes occurring along the branches of a phylogeny can manifest in subsequent changes in the rate of morphological evolution. Although selective pressures exerted by different activity patterns have acted uniformly across all mammals, we find differences in the rate of eye-shape evolution among orders. The key to understanding this is in how ecology itself has evolved. We find heterogeneity in how activity pattern has evolved among mammals that ultimately led to differences in the rate of eye-shape evolution among species. Our approach represents an exciting new way to pinpoint factors driving adaptation, enabling a clearer understanding of the factors that drive the evolution of biological diversity.

摘要

进化枝上形态进化的速度变化很大[1-6]。尽管这种速率变化通常被认为反映了历史上自然选择的强度,从而导致了适应性[7-14],但这缺乏经验和分析证据。证明分支之间的速率与适应之间存在关系的一种方法是表明快速进化速率与生态转变或关键创新有关。在这里,我们通过确定物种活动时间,即一天中活动的时间,是否解释了眼睛形状快速进化的爆发,来检验这种联系。使用现代方法来确定形态进化速率的变化[7,13],我们发现,在哺乳动物进化历史中,超过 74%的眼睛形状快速变化是由夜间、昼夜和日间物种的独特选择压力直接解释的。我们的研究结果揭示了进化枝上发生的生态变化如何在随后的形态进化速率变化中表现出来。尽管不同活动模式施加的选择压力在所有哺乳动物中均匀地作用,但我们发现不同目之间眼睛形状进化的速度存在差异。理解这一点的关键在于生态本身是如何进化的。我们发现,哺乳动物之间的活动模式进化存在异质性,这最终导致了物种之间眼睛形状进化速度的差异。我们的方法代表了一种新的方法,可以精确定位驱动适应性的因素,从而更清楚地了解驱动生物多样性进化的因素。

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