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首页> 外文期刊>Molecular ecology >How lizards survived blizzards: Phylogeography of the Liolaemus lineomaculatus group (Liolaemidae) reveals multiple breaks and refugia in southern Patagonia and their concordance with other codistributed taxa
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How lizards survived blizzards: Phylogeography of the Liolaemus lineomaculatus group (Liolaemidae) reveals multiple breaks and refugia in southern Patagonia and their concordance with other codistributed taxa

机译:蜥蜴如何在暴风雪中幸存:Liolaemus lineomaculatus组(Liolaemidae)的系统志揭示了巴塔哥尼亚南部的多个断裂和避难所,以及它们与其他共分布类群的一致性

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摘要

Patagonia was shaped by a complex geological history, including the Miocene uplift of the Andes, followed by volcanism, marine introgressions, and extreme climatic oscillations during Pliocene-Pleistocene glaciation-deglaciation cycles. The distributional patterns and phylogenetic relationships of southern patagonian animals and plants were affected in different ways, and those imprints are reflected in the seven phylogeographic breaks and eight refugia that have been previously proposed. In this study, we estimated time-calibrated phylogenetic/phylogeographic patterns in lizards of the Liolaemus lineomaculatus group and relate them to historical Miocene-to-Pleistocene events of Patagonia and the previously proposed phylogeographic patterns. Individuals from 51 localities were sequenced for the mitochondrial marker (cyt-b) and a subsample of individuals from each mitochondrial lineage was sequenced for one nuclear (LDA12D) and one slow evolving mitochondrial gene (12S). Our analyses revealed strong phylogeographic structure among lineages and, in most cases, no signal of demographic changes through time. The lineomaculatus group is composed of three strongly supported clades (lineomaculatus, hatcheri and kolengh + silvanae), and divergence estimates suggested their origins associated with the oldest known Patagonian glaciation (7-5 Ma); subsequent diversification within the lineomaculatus clade coincided with the large Pliocene glaciations (~3.5 Ma). The lineomaculatus clade includes nine strongly genetically and geographically structured lineages, five of which are interpreted as candidate species. Our findings suggest that some Liolaemus lineages have persisted in situ, each of them in a different refugium, through several glaciation- deglaciation cycles without demographic fluctuations. We also summarize and update qualitative evidence of some shared phylogeographic breaks and refugia among plants, rodents and lizards.
机译:巴塔哥尼亚受复杂的地质历史影响,包括安第斯山脉的中新世隆升,随后是火山,海洋渗入,以及上新世-更新世冰期-冰消循环期间的极端气候振荡。南部巴塔哥尼亚动植物的分布方式和系统发育关系受到不同的影响,这些印记反映在先前提出的七个系统地理学断裂和八个避难所中。在这项研究中,我们估计了Liolaemus lineomaculatus组的蜥蜴的时间校准的系统发育/系统记录模式,并将它们与巴塔哥尼亚的中新世到更新世事件和先前提出的系统记录模式相关联。对来自51个地区的个体的线粒体标记(cyt-b)进行了测序,并对来自每个线粒体谱系的个体子样本进行了一个核(LDA12D)和一个缓慢进化的线粒体基因(12S)的测序。我们的分析表明,谱系中的植物谱结构很强,并且在大多数情况下,没有随时间变化的人口统计学信号。 lineomaculatus组由三个强烈支持的进化枝(lineomaculatus,hatcheri和kolengh + silvanae)组成,据发散估计表明它们的起源与已知的最古老的巴塔哥尼亚冰川(7-5 Ma)有关。随后线虫分支内的多样化与上新世冰川(〜3.5 Ma)相吻合。 lineomaculatus进化枝包括九个具有强烈遗传和地理结构的世系,其中五个被解释为候选物种。我们的研究结果表明,一些Liolaemus世系通过数次冰川-冰河融化周期而没有人口统计学的波动而原位持续存在,它们各自位于不同的避难所。我们还总结并更新了植物,啮齿动物和蜥蜴之间某些共同的系统学断裂和避难所的定性证据。

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