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巨型动物灭绝,而非气候变化,可能解释了全新世滨鸟遗传多样性的下降。

Megafaunal extinctions, not climate change, may explain Holocene genetic diversity declines in shorebirds.

机构信息

Department of Biological Sciences, National University of Singapore, Singapore, Singapore.

Naturalis Biodiversity Center, Leiden, Netherlands.

出版信息

Elife. 2023 Aug 7;12:e85422. doi: 10.7554/eLife.85422.

Abstract

Understanding the relative contributions of historical and anthropogenic factors to declines in genetic diversity is important for informing conservation action. Using genome-wide DNA of fresh and historic specimens, including that of two species widely thought to be extinct, we investigated fluctuations in genetic diversity and present the first complete phylogenomic tree for all nine species of the threatened shorebird genus , known as whimbrels and curlews. Most species faced sharp declines in effective population size, a proxy for genetic diversity, soon after the Last Glacial Maximum (around 20,000 years ago). These declines occurred prior to the Anthropocene and in spite of an increase in the breeding area predicted by environmental niche modeling, suggesting that they were not caused by climatic or recent anthropogenic factors. Crucially, these genetic diversity declines coincide with mass extinctions of mammalian megafauna in the Northern Hemisphere. Among other factors, the demise of ecosystem-engineering megafauna which maintained open habitats may have been detrimental for grassland and tundra-breeding shorebirds. Our work suggests that the impact of historical factors such as megafaunal extinction may have had wider repercussions on present-day population dynamics of open habitat biota than previously appreciated.

摘要

了解历史和人为因素对遗传多样性下降的相对贡献对于指导保护行动至关重要。本研究利用包括两种广泛认为已灭绝的物种在内的新鲜和历史标本的全基因组 DNA,调查了遗传多样性的波动,并首次为受威胁的滨鸟属的所有 9 种物种提供了完整的系统基因组树,这些物种被称为杓鹬和弯嘴滨鹬。在末次冰盛期(约 2 万年前)之后,大多数物种的有效种群数量(遗传多样性的代表)急剧下降。这些下降发生在人类世之前,尽管环境生态位模型预测繁殖区有所增加,但这表明它们不是由气候或最近的人为因素引起的。至关重要的是,这些遗传多样性的下降与北半球哺乳动物巨型动物的大规模灭绝同时发生。除其他因素外,维持开阔生境的生态系统工程巨型动物的灭绝可能对草原和苔原繁殖的滨鸟产生了不利影响。我们的研究表明,历史因素(如巨型动物灭绝)的影响可能比以前认为的对当今开阔生境生物群的种群动态产生更广泛的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9174/10406428/b2d7855a038b/elife-85422-fig1.jpg

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