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Rapid Genetic Erosion In Pollutant-exposed Experimental Chironomid Populations

机译:暴露于污染物的实验尺虫群体的快速遗传侵蚀。

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Few studies have evaluated how effectively environmental contamination may reduce genetic diversity of a population. Here, we chose a laboratory approach in order to test if tributyltin (TBT) exposure at environmentally relevant concentrations leads to reduced genetic variation in the midge Chironomus riparius. Two TBT-exposed and two unexposed experimental populations were reared simultaneously in the laboratory for 12 generations. We recorded several life-history traits in each generation and monitored genetic variation over time using five variable microsatellite markers. TBT-exposed strains showed increased larval mortality (treatments: 43.8%; controls: 27.8%), slightly reduced reproductive output, and delayed larval development. Reduction of genetic variation was strongest and only significant in the TBT-exposed strains (treatments: -45.9%, controls: -24.4% of initial heterozygosity) after 12 generations. Our findings document that chemical pollution may lead to a rapid decrease in genetic diversity, which has important implications for conservation strategies and ecological management in polluted environments.
机译:很少有研究评估环境污染如何有效降低种群遗传多样性。在这里,我们选择了一种实验室方法来测试在环境相关浓度下三丁基锡(TBT)的暴露是否导致蚊虫Chironomus riparius的遗传变异减少。在实验室中同时饲养了两个暴露于TBT的实验种群和两个未暴露的实验种群,共进行了12代。我们记录了每一代的几个生命历史特征,并使用五个可变微卫星标记随时间监测了遗传变异。暴露于TBT的菌株显示出幼虫死亡率增加(治疗:43.8%;对照:27.8%),生殖产量略有降低,幼虫发育延迟。遗传变异的减少最强,仅在暴露了TBT的菌株中显着(处理:-45.9%,对照:原始杂合性的-24.4%),经过12代。我们的研究结果表明,化学污染可能导致遗传多样性迅速下降,这对污染环境中的保护策略和生态管理具有重要意义。

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