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Diversity of microbial communities potentially involved in mercury methylation in rice paddies surrounding typical mercury mining areas in China

机译:中国典型汞矿产区周围水稻田中可能与甲基化有关的微生物群落的多样性

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Mercury can be a serious hazard to human health, especially in paddy soils surrounding mining areas. In this study, mercury (Hg)‐methylating microbes with the potential biomarker gene hgcA were obtained from 45 paddy soil samples in mercury mining areas in Fenghuang, Wanshan, and Xunyang. In different areas, the abundance of the hgcA gene was affected by different environmental factors, including organic matter, pH, total carbon content, total nitrogen content, and total mercury content. Phylogenetic analysis showed that hgcA microbes in paddy soils were potentially members of the phyla Proteobacteria, Euryarchaeota, Chloroflexi, and two unnamed groups. Canonical correspondence analysis showed that pH and organic matter impacted the hgcA gene diversity and the microbial community structures in paddy soils. The identification of Hg‐methylating microbes may be crucial for understanding mercury methylation/demethylation processes, which would be helpful in assessing the risk of methylmercury contamination in the food chain.
机译:汞可能对人类健康构成严重危害,尤其是在矿区周围的稻田中。在这项研究中,具有潜在生物标记基因hgcA的甲基化汞(Hg)微生物来自凤凰,万山和and阳汞矿区的45个稻田土壤样品。在不同地区,hgcA基因的丰度受到不同环境因素的影响,包括有机物,pH,总碳含量,总氮含量和总汞含量。系统发育分析表明,稻田土壤中的hgcA微生物可能是Proteobacteria,Euryarchaeota,Chloroflexi和两个未命名组的成员。典型的对应分析表明,pH和有机质影响稻田土壤中hgcA基因的多样性和微生物群落结构。汞甲基化微生物的鉴定对于理解汞甲基化/去甲基化过程可能至关重要,这将有助于评估食物链中甲基汞污染的风险。

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