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Climatic and geographic effects on the spatial genetic pattern of a landbird species (Alectoris rufa) on the Iberian Peninsula

机译:对伊比利亚半岛地块物种空间遗传模式(Alectoris Rufa)的气候和地理效应

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摘要

Understanding the spatial pattern of genetic diversity may be pivotal to adaptive conservation management of a given taxon. The red-legged partridge (Alectoris rufa, Linnaeus 1758) is naturally widely distributed from the Mediterranean to humid temperate zones. According to a recent study, the genetic structure of this species comprises five clusters, three of which are in the Iberian Peninsula (glacial refugia). Partridge demographic expansion events and climatic shifts during Pleistocene glaciations have been used to test the hypotheses concerning Iberian red-legged partridge distribution. We tested the existence of climatic and geographic relationships on genetic diversity/distances. We employed markers from two different genetic systems, such as part of the mitochondrial DNA control region (n = 113) and 20 species-specific microsatellite DNA loci (n = 377), including climatic and geographic factors from the 14 Iberian localities where A. rufa populations were sampled. Our results showed a mitochondrial genetic diversity pattern associated with a thermic gradient, and a decrease of genetic diversity in peripheral populations that concurred with the 'abundant centre' hypothesis. Overall, current climatic variables reliably described genetic variation and differentiation in the red-legged partridge, which may be a result of local species adaptation.
机译:理解遗传多样性的空间模式可能是对给定分类的自适应保护管理的关键。红腿鹧(Alectoris Rufa,Linnaeus 1758)自然地从地中海到潮湿的温带区分布。根据最近的一项研究,该物种的遗传结构包括五个簇,其中三个是伊比利亚半岛(冰川避难所)。帕尔特里奇人口扩张事件和活泼的冰川期间的气候变化已经用于测试关于伊比利亚红腿鹧Partridge分布的假设。我们测试了对遗传多样性/距离的气候和地理关系的存在。我们从两个不同的遗传系统中使用标记,例如线粒体DNA对照区域(n = 113)和20种特异性微卫星DNA基因座(n = 377)的一部分,包括来自14个伊比利亚地区的气候和地理因子,其中A. Rufa人口被取样。我们的结果表明,与热梯度相关的线粒体遗传多样性模式,并在“丰富的中心”假设中同一步的外围人群中的遗传多样性降低。总体而言,目前的气候变量可靠地描述了红色腿鹧的遗传变异和分化,这可能是当地物种适应的结果。

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