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Comparative phylogeography of sympatric sister species, Clevelandia ios and Eucyclogobius newberryi (Teleostei, Gobiidae), across the California Transition Zone

机译:横跨加利福尼亚过渡区的同胞姐妹物种Clevelandia ios和Eucyclogobius newberryi(Teleostei,Gobiidae)的比较系统地理学

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摘要

It is paradigmatic in marine species that greater dispersal ability often, but not always, results in greater gene flow and less population structure. Some of the exceptions may be attributable to studies confounded by comparison of species with dissimilar evolutionary histories, i.e. co-occurring species that are not closely related or species that are closely related but allopatric. Investigation of sympatric sister species, in contrast, should allow differences in phylogeographic structure to be attributed reliably to recently derived differences in dispersal ability. Here, using mitochondrial DNA control region sequence, we first confirm that Clevelandia ios and Eucyclogobius newberryi are sympatric sister taxa, then demonstrate considerably shallower phylogeographic structure in C. ios than in E. newberryi. This. shallower phylogeographic structure is consistent with the higher dispersal ability of C. ios, which most likely results from the interaction of habitat and life-history differences between the species. We suggest that the paradigm will be investigated most rigorously by similar studies of other sympatric sister species, appended by thorough ecological studies, and by extending this sister-taxon approach to comparative phylogeographic studies of monophyletic clades of sympatric species. [References: 75]
机译:在海洋物种中,这是典型的例子,通常但并非总是如此,更大的扩散能力导致更大的基因流动和更少的种群结构。一些例外可能归因于通过比较具有不同进化历史的物种(即不密切相关的同现物种或紧密相关但异种的物种)而混淆的研究。相反,对同胞姊妹物种的研究应允许将系统地理结构的差异可靠地归因于最近得出的分散能力差异。在这里,使用线粒体DNA控制区序列,我们首先确认克利夫兰氏菌ios和Eucyclogobius newberryi是同胞姊妹类群,然后在C. ios中显示比E.newberryi浅得多的系统地理结构。这个。较浅的植物学结构与C. ios的较高扩散能力相一致,这很可能是由于栖息地和物种之间生活史差异的相互作用所致。我们建议通过对其他同胞姐妹物种的类似研究,最详尽的生态学研究,以及将该姐妹分类法方法扩展到同胞物种单系进化枝的比较系统地理学研究,将对这一范例进行最严格的研究。 [参考:75]

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