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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Panmixia in the European eel: a matter of time...
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Panmixia in the European eel: a matter of time...

机译:欧洲鳗鱼中的Panmixia:时间问题...

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摘要

The European eel (Anguilla anguilla L.) has been a prime example of the panmixia paradigm because of its extraordinary adaptation to the North Atlantic gyral system, semelparous spawning in the Sargasso Sea and long trans-oceanic migration. Recently, this view was challenged by the suggestion of a genetic structure characterized by an isolation-by-distance (IBD) pattern. This is only likely if spawning subpopulations are spatially and/or temporally separated, followed by non-random larval dispersal. A limitation of previous genetic work on eels is the lack of replication over time to test for temporal stability of genetic structure. Here, we hypothesize that temporal genetic variation plays a significant role in explaining the spatial structure reported earlier for this species. We tested this by increasing the texture of geographical sampling and by including temporal replicates. Overall genetic differentiation among samples was low, highly significant and comparable with earlier studies (FST=0.0014; p<0.01). On the other hand, and in sharp contrast with current understandings, hierarchical analyses revealed no significant inter-location genetic heterogeneity and hence no IBD. Instead, genetic variation among temporal samples within sites clearly exceeded the geographical component. Our results provide support for the panmixia hypothesis and emphasize the importance of temporal replication when assessing population structure of marine fish species.
机译:欧洲鳗鱼(Anguilla anguilla L.)因其对北大西洋回旋系统的非凡适应性,Sargasso海中的卵状产卵和长期的跨洋迁徙而成为全人类范式的主要例证。最近,这种观点受到以远距离隔离(IBD)模式为特征的遗传结构的建议的挑战。仅当产卵子种群在空间和/或时间上分开,然后进行非随机幼虫扩散时,才有可能。鳗鱼先前的遗传工作的局限性在于,随着时间的推移,缺乏复制来测试遗传结构的时间稳定性。在这里,我们假设时间遗传变异在解释早先报道该物种的空间结构中起着重要作用。我们通过增加地理采样的纹理并包括时间重复来测试了这一点。样品之间的总体遗传分化低,高度显着并且可与早期研究相比较(FST = 0.0014; p <0.01)。另一方面,与当前的理解形成鲜明对比的是,层次分析显示没有明显的位间遗传异质性,因此没有IBD。取而代之的是,地点内临时样本之间的遗传变异明显超出了地理成分。我们的结果为全混虫假说提供了支持,并在评估海水鱼类种群结构时强调了时间复制的重要性。

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