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繁殖地的本地遗传结构:西班牙的蓝喉歌鸲(Luscinia svecica)

Local genetic structure on breeding grounds of a long-distance migrant passerine: the bluethroat (Luscinia svecica) in Spain.

机构信息

Instituto de Investigación en Recursos Cinegéticos, Ciudad Real, Spain.

出版信息

J Hered. 2013 Jan-Feb;104(1):36-46. doi: 10.1093/jhered/ess071. Epub 2012 Sep 24.

Abstract

Breeding site fidelity can be determined by environmental features, which depending on their heterogeneous distribution may shape the genetic landscape of a population. We used 10 microsatellite loci to study the genetic variation of 83 bluethroats (Luscinia svecica azuricollis) across 14 localities within the Spanish breeding population and assess the relative influence of different habitat characteristics (physiography and vegetation) on genetic differentiation. Based on the genetic variation of this population, we identified 3 geographically consistent genetic clusters that on average showed a higher genetic differentiation than among other north European populations, even those belonging to different subspecies. The inferred genetic clusters occurred in geographic areas that significantly differed in elevation. The highest genetic differentiation was observed between sites at different mountain ranges, as well as between the highest altitude sites in the northeastern locale, whereas vegetation type did not explain a significant percentage of genetic variation. The lack of correlation between geographic and genetic distances suggests that this pattern of genetic structure cannot be explained as a consequence of isolation by distance. Finally, we discuss the importance of preserving areas encompassing high environmental and genetic variation as a means of preserving evolutionary processes and adaptive potential.

摘要

繁殖地忠诚度可以通过环境特征来确定,而这些特征的异质分布可能会影响种群的遗传格局。我们使用 10 个微卫星位点,研究了西班牙繁殖种群中 14 个地点的 83 只蓝喉歌鸲(Luscinia svecica azuricollis)的遗传变异,并评估了不同生境特征(地貌和植被)对遗传分化的相对影响。基于该种群的遗传变异,我们确定了 3 个地理上一致的遗传聚类,这些聚类的平均遗传分化程度高于其他北欧种群,甚至高于属于不同亚种的种群。推断出的遗传聚类出现在海拔显著不同的地理区域。在不同山脉之间的地点之间以及在东北部地点的最高海拔地点之间观察到最高的遗传分化,而植被类型并不能解释遗传变异的显著比例。地理距离和遗传距离之间缺乏相关性表明,这种遗传结构模式不能解释为由于距离隔离而导致的结果。最后,我们讨论了保护具有高环境和遗传变异的区域的重要性,这是保护进化过程和适应潜力的一种手段。

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