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定义马达加斯加鬣蜥(属名 Oplurus)的系统地理学结构的时空模式。

Defining spatial and temporal patterns of phylogeographic structure in Madagascar's iguanid lizards (genus Oplurus).

机构信息

Department of Biology, Duke University, Durham, NC 27708, USA.

出版信息

Mol Ecol. 2012 Aug;21(15):3839-51. doi: 10.1111/j.1365-294X.2012.05651.x. Epub 2012 Jun 13.

DOI:10.1111/j.1365-294X.2012.05651.x
PMID:22694729
Abstract

Understanding the remarkably high species diversity and levels of endemism found among Madagascar's flora and fauna has been the focus of many studies. One hypothesis that has received much attention proposes that Quaternary climate fluctuations spurred diversification. While spatial patterns of distribution and phylogenetic relationships can provide support for biogeographic predictions, temporal estimates of divergence are required to determine the fit of these geospatial patterns to climatic or biogeographic mechanisms. We use multilocus DNA sequence data to test whether divergence times among Malagasy iguanid lizards of the subfamily Oplurinae are compatible with a hypotheses of Pliocene-Pleistocene diversification. We estimate the oplurine species tree and associated divergence times under a relaxed-clock model. In addition, we examine the phylogeographic structure and population divergence times within two sister species of Oplurus primarily distributed in the north-west and south-west of Madagascar (Oplurus cuvieri and Oplurus cyclurus, respectively). We find that divergence events among oplurine lineages occurred in the Oligocene and Miocene and are thus far older and incompatible with the hypothesis that recent climate fluctuations are related to current species diversity. However, the timing of intraspecific divergences and spatial patterns of population genetic structure within O. cuvieri and O. cyclurus suggest a role for both intrinsic barriers and recent climate fluctuations at population-level divergences. Integrating information across spatial and temporal scales allows us to identify and better understand the mechanisms generating patterns diversity.

摘要

理解马达加斯加动植物区系中极高的物种多样性和特有水平一直是许多研究的重点。一个备受关注的假设提出,第四纪气候波动促进了多样化。虽然分布的空间模式和系统发育关系可以为生物地理预测提供支持,但需要估计分歧的时间来确定这些地理空间模式与气候或生物地理机制的吻合程度。我们使用多基因座 DNA 序列数据来检验马达加斯加鬣蜥科 Oplurinae 亚科蜥蜴的分歧时间是否与上新世-更新世多样化的假设相符。我们在松弛时钟模型下估计 oplurine 种系树和相关分歧时间。此外,我们还研究了主要分布在马达加斯加西北部和西南部的两个 oplurus 姐妹种的系统地理学结构和种群分歧时间(分别为 Oplurus cuvieri 和 Oplurus cyclurus)。我们发现 oplurine 谱系之间的分歧事件发生在上新世和中新世,因此时间更早,与最近的气候波动与当前物种多样性有关的假设不一致。然而,O. cuvieri 和 O. cyclurus 内种间分歧的时间以及种群遗传结构的空间模式表明,内在障碍和近期气候波动在种群水平的分歧中都起到了作用。整合跨时空尺度的信息可以帮助我们识别和更好地理解产生多样性模式的机制。

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