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Anthropogenic remediation of heavy metals selects against natural microbial remediation

机译:重金属的人为修复选择免受自然微生物修复

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摘要

In an era of unprecedented environmental change, there have been increasing ecological and global public health concerns associated with exposure to anthropogenic pollutants. While there is a pressing need to remediate polluted ecosystems, human intervention might unwittingly oppose selection for natural detoxification, which is primarily carried out by microbes. We test this possibility in the context or a ubiquitous chemical remediation strategy aimed at targeting metal pollution: the addition of lime-containing material. Here, we show that raising pH by liming decreased the availability of toxic metals in acidic mine-degraded soils, hut as a consequence selected against microbial taxa that naturally remediate soil through the production of metal-binding siderophores. Our results therefore highlight the crucial need to consider the eco-evolutionary consequences of human environmental strategies on microbial ecosystem services and other traits.
机译:在一个前所未有的环境变化的时代,由于暴露于人为污染物,已经增加了生态和全球公共卫生问题。 虽然迫切需要修复污染的生态系统,但人类干预可能会不知不觉地反对用于自然排毒的选择,主要由微生物进行。 我们在上下文中或旨在靶向金属污染的普遍化学修复策略中的这种可能性:添加含石灰材料。 在这里,我们表明,通过跛行提高pH值降低了酸性矿矿污物降解的毒性金属的可用性,除了针对通过生产金属结合的施工电池而自然地修复土壤的微生物分类群的后果。 因此,我们的结果突出了考虑人类环境策略对微生物生态系统服务和其他特征的生态进化后果的重要要求。

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