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Fish population genetic structure shaped by hydroelectric power plants in the upper Rhine catchment

机译:莱茵河上游流域水力发电厂塑造的鱼类种群遗传结构

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摘要

The Rhine catchment in Switzerland has been transformed by a chain of hydroelectric power stations. We addressed the impact of fragmentation on the genetic structure of fish populations by focusing on the European chub (Squalius cephalus). This fish species is not stocked and copes well with altered habitats, enabling an assessment of the effects of fragmentation per se. Using microsatellites, we genotyped 2133 chub from 47 sites within the catchment fragmented by 37 hydroelectric power stations, two weirs and the Rhine Falls. The shallow genetic population structure reflected drainage topology and was affected significantly by barriers to migration. The effect of power stations equipped with fishpasses on genetic differentiation was detectable, albeit weaker than that of man‐made barriers without fishpasses. The Rhine Falls as the only long‐standing natural obstacle (formed 14 000 to 17 000 years ago) also had a strong effect. Man‐made barriers also exacerbated the upstream decrease in allelic diversity in the catchment, particularly when lacking fishpasses. Thus, existing fishpasses do have the desired effect of mitigating fragmentation, but barriers still reduce population connectivity in a fish that traverses fishpasses better than many other species. Less mobile species are likely to be affected more severely.
机译:瑞士的莱茵河流域已被一系列水力发电站改造。通过关注欧洲European(Squalius cephalus),我们解决了碎片化对鱼类种群遗传结构的影响。这种鱼类没有放养,无法很好地应对生境的变化,因此可以评估其本身的分裂作用。我们使用微卫星,对流域内47个地点的2133 chub进行了基因分型,该地点被37个水力发电站,两个堰和莱茵瀑布所分割。浅层遗传种群结构反映了排水系统的拓扑结构,并且受到迁移障碍的显着影响。装有鱼道的电站对遗传分化的影响是可以检测到的,尽管比没有鱼道的人为障碍要弱。莱茵瀑布(Rhine Falls)是唯一的长期自然障碍物(形成于14 000至17000年前)也产生了很大的影响。人为障碍也加剧了流域等位基因多样性的上游减少,特别是在缺乏鱼道的情况下。因此,现有的鱼道确实具有减轻碎片的理想效果,但是与许多其他物种相比,障碍物仍然降低了穿越鱼道的鱼类的种群连通性。流动性较小的物种可能会受到更严重的影响。

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