首页> 外文OA文献 >Mitochondrial DNA structure of the Iberian populations of the white-clawed crayfish, Austropotamobius italicus italicus (Faxon, 1914)
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Mitochondrial DNA structure of the Iberian populations of the white-clawed crayfish, Austropotamobius italicus italicus (Faxon, 1914)

机译:白爪小龙虾伊比利亚小龙虾伊比利亚种群的线粒体DNA结构(Faxon,1914年)

摘要

This study describes the mitochondrial structure of the Iberian population of the white-clawed crayfish Austropotamobius italicus under a phylogeographyc context and considering the genetic variation of the entire taxon distributed in the southern part of Europe. Current sub-specific hypotheses were only partially supported, and a genetic structure related to climatic events is postulated as the main factor explaining its variation. Due to a more extensive sampling and sequencing strategy, the two different mitochondrial lineages of the taxon were found in the Iberian Peninsula, and haplotype variation of populations was observed in a considerable extent regarding that reported in previous studies from other parts of its distribution range. This evidence, together with the timing of Pleistocene expansion events for the Iberian populations (∼10,772-20,004 YBP) as well as an estimated splitting time from Italian populations previous to the last glacial maximum (T= 34,858. years) suggest that the presence of A. italicus in the Iberian Peninsula could be explained by a combination of contrasting dispersal histories and a complex biogeographic scenario. We propose that although possible, human translocations may not be the only cause to explain the complex distribution patterns of species strongly affected by recent climatic events. © 2010 Elsevier Inc.
机译:这项研究描述了在系统地理学背景下,白爪小龙虾Austropotamobius italicus的伊比利亚种群的线粒体结构,并考虑了分布在欧洲南部的整个分类单元的遗传变异。当前的亚特定假设仅得到部分支持,并且假定与气候事件有关的遗传结构是解释其变化的主要因素。由于采用了更广泛的采样和测序策略,在伊比利亚半岛发现了分类单元的两个不同的线粒体谱系,并且与先前研究报告的分布范围其他部分相比,在相当大的程度上观察到了种群的单体型变异。该证据以及伊比利亚人口的更新世扩张事件发生的时间(约10,772-20,004 YBP),以及从意大利人口到最后一次冰河最大值(T = 34,858年)之前的估计分裂时间表明,存在伊比利亚半岛的意大利锥虫可以通过分散的历史对比和复杂的生物地理环境来解释。我们建议,尽管可能,但人类易位可能不是解释受近期气候事件强烈影响的物种的复杂分布模式的唯一原因。 ©2010爱思唯尔公司。

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