首页> 美国卫生研究院文献>BMC Evolutionary Biology >Phylogeographic and evolutionary history analyses of the warty crab Eriphia verrucosa (Decapoda, Brachyura, Eriphiidae) unveil genetic imprints of a late Pleistocene vicariant event across the Gibraltar Strait, erased by postglacial expansion and admixture among refugial lineages
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Phylogeographic and evolutionary history analyses of the warty crab Eriphia verrucosa (Decapoda, Brachyura, Eriphiidae) unveil genetic imprints of a late Pleistocene vicariant event across the Gibraltar Strait, erased by postglacial expansion and admixture among refugial lineages

机译:对疣蟹Eriphia verrucosa(十足目,Brachyura,Eriphiidae)的系统地理学和进化史分析揭示了直布罗陀海峡晚更新世越战事件的遗传印记,被冰川后扩张和避难所沿袭混合所抹除

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摘要

BackgroundThe Pleistocene cyclic sea-level fluctuations are thought to have markedly affected the distribution and genetic architecture of Atlanto-Mediterranean biota. Despite the acknowledged key role played by these historical events in shaping population genetic structure of marine species, little is still known about the processes involved in shaping the spatial distribution of genetic variation within intertidal species. We intended in this study to reconstruct the phylogeography of a common and widely distributed coastal species across the East Atlantic and Mediterranean Sea (the warty crab Eriphia verrucosa), aiming to unravel potential microevolutionary processes likely involved in shaping its genetic polymorphism. For this purpose, a total of 155 specimens of E. verrucosa from 35 locations across the entire distribution range were analyzed by comparing a 453 basepairs region of the mitochondrial gene cytochrome oxidase subunit 1 (Cox1).
机译:背景资料更新世循环海平面波动被认为已显着影响了大西洋-地中海生物群系的分布和遗传结构。尽管这些历史事件在塑造海洋物种种群遗传结构中发挥了公认的关键作用,但对塑造潮间物种内部遗传变异的空间分布所涉及的过程仍然知之甚少。我们打算在本研究中重建东大西洋和地中海沿岸常见的且分布广泛的沿海物种(疣蟹Eriphia verrucosa)的系统地理学,旨在揭示可能影响其遗传多态性的潜在微进化过程。为此,通过比较线粒体基因细胞色素氧化酶亚基1(Cox1)的453个碱基对区域,分析了整个分布范围内35个地点的总共155个疣状大肠杆菌。

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