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Genetic population structure in prickly sculpin (Cottus asper) reflects isolation-by-environment between two life-history ecotypes

机译:刺猬(Cottus asper)中的遗传种群结构反映了两种生活史生态型之间的环境隔离

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摘要

Life-history transitions have evolved repeatedly in numerous taxa, although the ecological and evolutionary conditions favouring such transitions in the presence of gene flow remain poorly understood. The present study aimed to disentangle the effects of isolation-by-distance and isolation-by-environment on genetic differentiation between two sympatric life-history ecotypes. Using 14 microsatellite loci, we first characterized amphidromous and freshwater groups of Cottus asper in a high gene flow setting in the Lower Fraser River system (south-western British Columbia, Canada) to test for the effects of habitat and geographical distance on the distribution of life-history ecotypes. Within the main river channel, no genetic differentiation was found, whereas tributaries even close to the estuary were genetically differentiated. Partial mantel tests confirmed that genetic differentiation between river tributaries and the main channel was independent from geographical distance, with distance-scaled migration rates indicating reduced gene flow from the main channel into the tributaries. Our results suggest that isolation-by-environment can play an important role for the early stage of life-history transitions, and may promote differentiation among life-history ecotypes despite the presence of gene flow
机译:尽管在基因流存在的情况下有利于这种转变的生态和进化条件仍然知之甚少,但在许多生物分类中,生命历史的转变已经反复发生。本研究旨在弄清远距离隔离和环境隔离对两种同胞生活史生态型之间遗传分化的影响。我们使用14个微卫星基因座,在下弗雷泽河系统(西南不列颠哥伦比亚省,加拿大)的高基因流环境中,首先对高产的Cottus asper的两性和淡水群进行了表征,以测试栖息地和地理距离对鱼的分布的影响生命史生态型。在主要河道内,未发现任何遗传分化,而即使在河口附近的支流也进行了遗传分化。局部壁炉架试验证实,河支流与主河道之间的遗传分化与地理距离无关,距离尺度的迁移率表明从主河道到支流的基因流量减少。我们的结果表明,通过环境隔离可以在生命历史过渡的早期阶段发挥重要作用,并且尽管存在基因流,也可以促进生命历史生态型之间的分化。

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