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Coping with copper: legacy effect of copper on potential activity of soil bacteria following a century of exposure

机译:应对铜:铜的遗留效应对曝光率近期土壤细菌潜在活动的影响

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摘要

Copper has been intensively used in industry and agriculture since mid-18(th) century and is currently accumulating in soils. We investigated the diversity of potential active bacteria by 16S rRNA gene transcript amplicon sequencing in a temperate grassland soil subjected to century-long exposure to normal (similar to 15 mg kg(-1)), high (similar to 450 mg kg(-1)) or extremely high (similar to 4500 mg kg(-1)) copper levels. Results showed that bioavailable copper had pronounced impacts on the structure of the transcriptionally active bacterial community, overruling other environmental factors (e.g. season and pH). As copper concentration increased, bacterial richness and evenness were negatively impacted, while distinct communities with an enhanced relative abundance of Nitrospira and Acidobacteria members and a lower representation of Verrucomicrobia, Proteobacteria and Actinobacteria were selected. Our analysis showed the presence of six functional response groups (FRGs), each consisting of bacterial taxa with similar tolerance response to copper. Furthermore, the use of FRGs revealed that specific taxa like the genus Nitrospira and several Acidobacteria groups could accurately predict the copper legacy burden in our system, suggesting a potential promising role as bioindicators of copper contamination in soils.Long-term effect of a copper gradient on soil bacteria.Long-term effect of a copper gradient on soil bacteria.
机译:自18世纪中期以来,铜已经广泛用于工业和农业,目前正在累积在土壤中。我们调查了16S rRNA基因转录子扩增子分量在温带草地土壤中进行的潜在活性细菌的多样性,经历长期暴露于正常(类似于15mg kg(-1)),高(类似于450 mg kg(-1 ))或极高(类似于4500mg kg(-1))铜水平。结果表明,生物可利用的铜对转录活性细菌群落的结构产生影响,从而越过于其他环境因素(例如季节和pH)。随着铜浓度的增加,细菌性质和均匀性受到负面影响,而选择具有增强的氮血管菌和抗杀菌性和癌细胞癌,植物基因菌和抗菌菌的不同群体。我们的分析显示出六个功能反应组(FRGS),每个含有细菌分类群,对铜具有相似的耐受性的耐受性。此外,FRG的使用揭示了像氮杂物和几种抗酸体群体这样的特定分类群可以准确地预测我们系统中的铜遗留负担,表明土壤中铜污染的生物indicators具有潜在的有希望的作用。铜梯度的术语效应论土壤细菌。铜梯度对土壤细菌的影响。

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