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首页> 外文期刊>Heredity: An International Journal of Genetics >Testing models of refugial isolation, colonization and population connectivity in two species of montane salamanders
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Testing models of refugial isolation, colonization and population connectivity in two species of montane salamanders

机译:两种山料氨酸蝾螈中难治分离,殖民化和群体连通性的测试模型

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摘要

Pleistocene glaciations have profoundly affected patterns of genetic diversity within many species. Temperate alpine organisms likely experienced dramatic range shifts, given that much of their habitat was glaciated during this time. While the effects of glaciations are relatively well understood, the spatial locations of refugia and processes that gave rise to current patterns of diversity are less well known. We use a microsatellite data set to test hypotheses of population connectivity and refugial isolation in the web-toed salamanders (Hydromantes) of the Sierra Nevada. We reject models of refugia with subsequent expansion into either the high southern Sierra or low-elevation Owens Valley, in favor of a simple isolation model with no migration between current populations. We find no evidence of migration at even moderate spatial scales using a variety of analyses in the southern Sierra, and limited migration in the northern Sierra. These results suggest that divergence in isolation following fragmentation is the dominant process structuring genetic variation in these salamander species. In the context of anthropogenic climate change and habitat degradation, these results imply that salamanders and other low-vagility alpine organisms are at risk of decline as they are unlikely to migrate across large distances.
机译:在许多物种中,更新世冰川的冰川冰川巨大地影响了遗传多样性。鉴于他们在此期间的大部分栖息地均衡,温带高寒的生物可能经历了戏剧性的范围。虽然冰川的效果相对较好地理解,但是,避难所的空间位置和产生目前的多样性模式的过程较少。我们使用微卫星数据集来测试塞拉尼达山脉的织物蝾螈(水样)中的人口连通性和难民隔离。我们拒绝避难所的模型,随后扩展到高南部的塞拉或低海拔欧文斯谷,支持一个简单的隔离模型,在目前的群体之间没有迁移。我们发现在南部南部南部南部的各种分析以及北部塞拉北部的迁移有限的迁移,没有甚至适度的空间尺度甚至是甚至中等空间尺度的证据。这些结果表明,在碎裂后分离的分离是结构化这些蝾螈种类遗传变异的主要过程。在人为气候变化和栖息地降解的背景下,这些结果意味着蝾螈和其他低迷雾性高寒的生物有可能造成衰落的风险,因为它们不太可能跨越大距离。

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