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古气候决定了穴居蛇科(Uropeltidae Cuvier,1829年)的物种多样化模式。

Paleoclimate determines diversification patterns in the fossorial snake family Uropeltidae Cuvier, 1829.

作者信息

Cyriac Vivek Philip, Kodandaramaiah Ullasa

机构信息

IISER-TVM Centre for Research and Education in Ecology and Evolution (ICREEE) and School of Biology, Indian Institute of Science Education and Research Thiruvananthapuram, Maruthamala P.O., Vithura, Thiruvananthapuram, Kerala 695551, India.

IISER-TVM Centre for Research and Education in Ecology and Evolution (ICREEE) and School of Biology, Indian Institute of Science Education and Research Thiruvananthapuram, Maruthamala P.O., Vithura, Thiruvananthapuram, Kerala 695551, India.

出版信息

Mol Phylogenet Evol. 2017 Nov;116:97-107. doi: 10.1016/j.ympev.2017.08.017. Epub 2017 Sep 1.

Abstract

Understanding how and why diversification rates vary across evolutionary time is central to understanding how biodiversity is generated and maintained. Recent mathematical models that allow estimation of diversification rates across time from reconstructed phylogenies have enabled us to make inferences on how biodiversity copes with environmental change. Here, we explore patterns of temporal diversification in Uropeltidae, a diverse fossorial snake family. We generate a time-calibrated phylogenetic hypothesis for Uropeltidae and show a significant correlation between diversification rate and paleotemperature during the Cenozoic. We show that the temporal diversification pattern of this group is punctuated by one rate shift event with a decrease in diversification and turnover rate between ca. 11Ma to present, but there is no strong support for mass extinction events. The analysis indicates higher turnover during periods of drastic climatic fluctuations and reduced diversification rates associated with contraction and fragmentation of forest habitats during the late Miocene. Our study highlights the influence of environmental fluctuations on diversification rates in fossorial taxa such as uropeltids, and raises conservation concerns related to present rate of climate change.

摘要

了解多样化速率如何以及为何随进化时间而变化,是理解生物多样性如何产生和维持的核心。最近的数学模型能够根据重建的系统发育关系估计不同时间的多样化速率,这使我们能够推断生物多样性如何应对环境变化。在此,我们探索穴蝰科(一种多样的穴居蛇类家族)的时间多样化模式。我们为穴蝰科生成了一个时间校准的系统发育假说,并表明在新生代期间,多样化速率与古温度之间存在显著相关性。我们表明,该类群的时间多样化模式被一次速率转变事件打断,大约在1100万年前至今,多样化和更替速率有所下降,但没有强有力的证据支持大规模灭绝事件。分析表明,在剧烈气候波动时期更替率较高,而在晚中新世期间,与森林栖息地收缩和破碎化相关的多样化速率降低。我们的研究突出了环境波动对穴居类群(如穴蝰科)多样化速率的影响,并引发了与当前气候变化速率相关的保护问题。

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