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首页> 外文期刊>The Journal of Heredity >Cytonuclear patterns of genetic diversity and the intricate evolutionary history of the inland silverside (Menidia beryllina).
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Cytonuclear patterns of genetic diversity and the intricate evolutionary history of the inland silverside (Menidia beryllina).

机译:遗传多样性的细胞核模式和内陆银杏(Menidia beryllina)的复杂进化史。

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摘要

DNA sequence variation at a mitochondrial and a nuclear intron locus was surveyed within and among multiple populations of the inland silverside (Menidia beryllina) from the southeastern United States and revealed discordant phylogenetic patterns but similar patterns of population genetic variation across nuclear and mitochondrial loci. Mitochondrial variation was geographically structured, with strongly supported monophyletic assemblages among Gulf of Mexico population samples and a close association of the St John's River (SJ) population with these same samples. Nuclear alleles were not strongly structured geographically, with little support for monophyly within or across basins. Conversely, population genetic parameters indicate that the bulk of genetic diversity for both genomes resides within and among Gulf of Mexico populations and that diversity within the Atlantic is largely restricted to the SJ population. The contrast in genetic variation and population phylogenies appears to be a function of historical demographic processes, most likely directed by fluctuating geomorphology of the Florida peninsula in response to North American glaciation cycles.
机译:在来自美国东南部的内陆银边(Menidia beryllina)的多个种群之中和之中,调查了线粒体和核内含子基因座的DNA序列变异,揭示了不一致的系统发育模式,但是整个核和线粒体基因座的种群遗传变异模式相似。线粒体变异具有地理结构,在墨西哥湾种群样本中具有强烈支持的单系组合,并且圣约翰河(SJ)种群与这些样本之间存在密切关联。核等位基因在地理上没有很强的结构,对盆地内部或盆地之间的单相性几乎没有支持。相反,种群遗传参数表明两个基因组的大部分遗传多样性都位于墨西哥湾种群之内和之中,而大西洋之内的多样性在很大程度上限于SJ种群。遗传变异和种群系统发育的反差似乎是历史人口统计过程的函数,很可能是由于佛罗里达半岛响应北美洲冰河周期的地貌变化而引起的。

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