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Ecological and morphological determinants of evolutionary diversification in Darwins finches and their relatives

机译:达尔文雀及其亲属进化多样化的生态与形态学决定因素

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摘要

Darwin's finches are a classic example of adaptive radiation, a process by which multiple ecologically distinct species rapidly evolve from a single ancestor. Such evolutionary diversification is typically explained by adaptation to new ecological opportunities. However, the ecological diversification of Darwin's finches following their dispersal to Galápagos was not matched on the same archipelago by other lineages of colonizing land birds, which diversified very little in terms of both species number and morphology. To better understand the causes underlying the extraordinary variation in Darwin's finches, we analyze the evolutionary dynamics of speciation and trait diversification in Thraupidae, including Coerebinae (Darwin's finches and relatives) and, their closely related clade, Sporophilinae. For all traits, we observe an early pulse of speciation and morphological diversification followed by prolonged periods of slower steady‐state rates of change. The primary exception is the apparent recent increase in diversification rate in Darwin's finches coupled with highly variable beak morphology, a potential key factor explaining this adaptive radiation. Our observations illustrate how the exploitation of ecological opportunity by contrasting means can produce clades with similarly high diversification rate yet strikingly different degrees of ecological and morphological differentiation.
机译:达尔文的雀属是自适应辐射的经典例子,该过程是多种生态上不同物种从单个祖先迅速发展的过程。这种进化多样化通常通过适应新的生态机会来解释。然而,达尔文雀以下的雀科的生态化多样化在他们的殖民地鸟类的其他谱系上与同一群岛匹配,这在物种数量和形态的方面都很少多样化。为了更好地了解达尔文雀的非凡变化的原因,我们分析了血栓球菌(Darwin的Finches和亲属),包括Coerebinae(Darwin的Finches和亲属)的形态和特质多样化的进化动态。对于所有特征,我们观察了物种和形态多样化的早期脉冲,然后长时间的稳态变化速度较慢。主要例外是达尔文雀的多元化率的明显提高,达尔文雀与高度可变的喙形态,潜在的关键因素解释了这种自适应辐射。我们的观察说明了通过对比装置利用生态机会的利用可以产生具有同样高的多样化率的片状,但具有惊显不同的生态和形态学分化。

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