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Human mining activity across the ages determines the genetic structure of modern brown trout (Salmo trutta L.) populations

机译:各个年龄段的人类采矿活动决定了现代褐鳟(Salmo trutta L.)种群的遗传结构

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摘要

Humans have exploited the earth's metal resources for thousands of years leaving behind a legacy of toxic metal contamination and poor water quality. The southwest of England provides a well-defined example, with a rich history of metal mining dating to the Bronze Age. Mine water washout continues to negatively impact water quality across the region where brown trout (Salmo trutta L.) populations exist in both metal-impacted and relatively clean rivers. We used microsatellites to assess the genetic impact of mining practices on trout populations in this region. Our analyses demonstrated that metal-impacted trout populations have low genetic diversity and have experienced severe population declines. Metal-river trout populations are genetically distinct from clean-river populations, and also from one another, despite being geographically proximate. Using approximate Bayesian computation (ABC), we dated the origins of these genetic patterns to periods of intensive mining activity. The historical split of contemporary metal-impacted populations from clean-river fish dated to the Medieval period. Moreover, we observed two distinct genetic populations of trout within a single catchment and dated their divergence to the Industrial Revolution. Our investigation thus provides an evaluation of contemporary population genetics in showing how human-altered landscapes can change the genetic makeup of a species.
机译:人类已经开发了数千年的地球金属资源,留下了有毒金属污染和水质差的遗产。英格兰西南部就是一个很好的例子,其金属开采历史可追溯到青铜时代。矿井水冲刷继续在整个受金属影响的河道和相对干净的河道中都存在褐鳟(Salmo trutta L.)的地区对水质产生负面影响。我们使用微卫星评估了采矿活动对该地区鳟鱼种群的遗传影响。我们的分析表明,受金属影响的鳟鱼种群遗传多样性较低,种群数量严重下降。尽管在地理上最接近,金属河鳟种群在遗传上与清洁河种群不同,而且在遗传上也彼此不同。使用近似贝叶斯计算(ABC),我们将这些遗传模式的起源追溯到密集的采矿活动时期。当代金属污染种群从干净的河流鱼类中分离出来的历史可追溯至中世纪。此外,我们在一个流域内观察到两个不同的鳟鱼遗传种群,并将其发散到工业革命。因此,我们的研究对当代人口遗传学进行了评估,以显示人类改变的景观如何改变物种的遗传构成。

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