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达尔文雀及其近亲进化多样化的生态和形态决定因素。

Ecological and morphological determinants of evolutionary diversification in Darwin's finches and their relatives.

作者信息

Reaney Ashley M, Bouchenak-Khelladi Yanis, Tobias Joseph A, Abzhanov Arkhat

机构信息

Science and Solutions for a Changing Planet DTP Department of Life Sciences Imperial College London Ascot UK.

Natural History Museum London UK.

出版信息

Ecol Evol. 2020 Nov 10;10(24):14020-14032. doi: 10.1002/ece3.6994. eCollection 2020 Dec.

Abstract

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.

摘要

达尔文雀是适应性辐射的经典例子,适应性辐射是一个过程,在此过程中,多个生态上不同的物种从单一祖先迅速进化而来。这种进化多样化通常是通过对新生态机会的适应来解释的。然而,达尔文雀扩散到加拉帕戈斯群岛后的生态多样化,在同一群岛上,其他陆栖鸟类的殖民谱系却并未出现,这些陆栖鸟类在物种数量和形态方面的多样化程度都很低。为了更好地理解达尔文雀非凡变异背后的原因,我们分析了裸鼻雀科物种形成和性状多样化的进化动态,包括加拉帕戈斯雀亚科(达尔文雀及其近亲)以及它们密切相关的分支,食籽雀亚科。对于所有性状,我们观察到物种形成和形态多样化的早期脉冲,随后是较长时期的较慢稳态变化速率。主要的例外是达尔文雀最近明显的多样化速率增加,以及高度可变的喙形态,这是解释这种适应性辐射的一个潜在关键因素。我们的观察结果说明了通过不同方式利用生态机会如何能够产生多样化速率同样高但生态和形态分化程度却显著不同的分支。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49b2/7771120/1dfa04399e47/ECE3-10-14020-g001.jpg

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