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灭绝的海地洞穴铁轨的古 DNA 表明加勒比海地区和旧世界之间存在生物地理联系。

Ancient DNA from the extinct Haitian cave-rail () suggests a biogeographic connection between the Caribbean and Old World.

机构信息

Biology Department, University of Nevada, Reno, NV 89557, USA.

Florida Museum of Natural History, University of Florida, Gainesville, FL 32611, USA.

出版信息

Biol Lett. 2021 Mar;17(3):20200760. doi: 10.1098/rsbl.2020.0760. Epub 2021 Mar 17.

Abstract

Worldwide decline in biodiversity during the Holocene has impeded a comprehensive understanding of pre-human biodiversity and biogeography. This is especially true on islands, because many recently extinct island taxa were morphologically unique, complicating assessment of their evolutionary relationships using morphology alone. The Caribbean remains an avian hotspot but was more diverse before human arrival in the Holocene. Among the recently extinct lineages is the enigmatic genus comprising three flightless species. Based on morphology, has been considered an aberrant rail (Rallidae) or related to flufftails (Sarothruridae). We recovered a nearly complete mitochondrial genome of from fossils, discovering that it is not a rallid but instead is sister to Sarothruridae, volant birds now restricted to Africa and New Guinea, and the recently extinct, flightless Aptornithidae of New Zealand. This result suggests a widespread or highly dispersive most recent common ancestor of the group. Prior to human settlement, the Caribbean avifauna had a far more cosmopolitan origin than is evident from extant species.

摘要

全新世期间全球生物多样性的减少阻碍了对人类以前生物多样性和生物地理学的全面了解。在岛屿上尤其如此,因为许多最近灭绝的岛屿分类群在形态上是独特的,这使得仅使用形态学评估它们的进化关系变得复杂。加勒比地区仍然是鸟类热点地区,但在人类进入全新世之前,这里的生物多样性更加丰富。最近灭绝的谱系之一是神秘的属,它由三个不会飞的物种组成。根据形态学,被认为是一种异常的秧鸡(Rallidae)或与绒毛尾鸡(Sarothruridae)有关。我们从化石中恢复了的近乎完整的线粒体基因组,发现它不是秧鸡,而是与Sarothruridae有关,Sarothruridae 是现在仅限于非洲和新几内亚的会飞的鸟类,以及最近灭绝的、不会飞的新西兰 Aptornithidae。这一结果表明,该群体的最近共同祖先具有广泛或高度分散的分布。在人类定居之前,加勒比地区的鸟类区系比现存物种所显示的起源更为世界性。

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Predictable evolution toward flightlessness in volant island birds.会飞的岛屿鸟类向不会飞状态的可预测演化。
Proc Natl Acad Sci U S A. 2016 Apr 26;113(17):4765-70. doi: 10.1073/pnas.1522931113. Epub 2016 Apr 11.

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