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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Microbial DNA records historical delivery of anthropogenic mercury
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Microbial DNA records historical delivery of anthropogenic mercury

机译:微生物DNA记录人为汞的历史传递

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Mercury (Hg) is an anthropogenic pollutant that is toxic to wildlife and humans, but the response of remote ecosystems to globally distributed Hg is elusive. Here, we use DNA extracted from a dated sediment core to infer the response of microbes to historical Hg delivery. We observe a significant association between the mercuric reductase gene (merA) phylogeny and the timing of Hg deposition. Using relaxed molecular clock models, we show a significant increase in the scaled effective population size of the merA gene beginning similar to 200 years ago, coinciding with the Industrial Revolution and a coincident strong signal for positive selection acting on residues in the terminal region of the mercuric reductase. This rapid evolutionary response of microbes to changes in the delivery of anthropogenic Hg indicates that microbial genomes record ecosystem response to pollutant deposition in remote regions.
机译:汞(Hg)是一种人为污染源,对野生生物和人类有毒,但遥远的生态系统对全球分布的Hg的响应却难以捉摸。在这里,我们使用从过时的沉积物核中提取的DNA来推断微生物对历史汞传输的响应。我们观察到汞还原酶基因(merA)系统发育和汞沉积时间之间的显着关联。使用宽松的分子时钟模型,我们显示merA基因的有效种群规模的大规模增长始于200年前,与工业革命和正向选择作用于分子末端区域残基的同时强烈信号相吻合。汞还原酶。微生物对人为汞传递的变化的这种快速进化反应表明,微生物基因组记录了生态系统对偏远地区污染物沉积的响应。

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