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Watershed characteristics shape the landscape genetics of brook stickleback (Culaea inconstans) in shallow prairie lakes

机译:分水岭特征影响着浅草原湖泊中的溪stick(Culaea inconstans)的景观遗传学

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摘要

Investigating the consequences of landscape features on population genetic patterns is increasingly important to elucidate the ecological factors governing connectivity between populations and predicting the evolutionary consequences of landscapes. Small prairie lakes in Alberta, Canada, and the brook stickleback (Culaea inconstans) that inhabit them, provide a unique aquatic system whereby populations are highly isolated from one another. These heterogeneous and extreme environments are prone to winterkills, an event whereby most of the fish die and frequent bottlenecks occur. In this study, we characterized the genetic population structure of brook stickleback among several lakes, finding that the species is hierarchically influenced by within‐lake characteristics in small‐scale watersheds. Landscape genetic analyses of the role of spatial features found support for basin characteristics associated with genetic diversity and bottlenecks in 20% of the sampled lakes. These results suggest that brook stickleback population genetic patterns may be driven, at least in part, by ecological processes that accelerate genetic drift and landscape patterns associated with reduced dispersal. Collectively, these results reinforce the potential importance of connectivity in the maintenance of genetic diversity, especially in fragmented landscapes.
机译:研究景观特征对种群遗传模式的影响对于阐明控制种群之间的连通性和预测景观演化后果的生态因素变得越来越重要。加拿大艾伯塔省的小型草原湖泊以及栖息在其中的溪stick(Culaea inconstans),提供了独特的水生系统,使种群彼此高度隔离。这些异质和极端的环境容易导致冬季死亡,这是大多数鱼死亡并经常发生瓶颈的事件。在这项研究中,我们表征了几个湖泊之间的小溪的遗传种群结构,发现该物种受到小流域湖内特征的分层影响。对空间特征作用的景观遗传分析发现,在20%的采样湖泊中,与流域多样性和瓶颈相关的盆地特征得到了支持。这些结果表明,溪背le种群的遗传模式可能至少部分地受到生态过程的驱动,这些生态过程加速了遗传漂移和与扩散减少相关的景观格局。总的来说,这些结果增强了连通性在维护遗传多样性,尤其是在零散的景观中的潜在重要性。

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