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Bacterial community shaped by heavy metals and contributing to health risks in cornfields

机译:重金属形成的细菌群落,对玉米田的健康构成威胁

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Scientists are increasingly aware that heavy metal contamination in soils, especially in farmland ecosystems, can negatively affect human health and alter the bacterial community that plays a critical role in plant growth and heavy metal accumulation. The goal of the present paper was to uncover how various heavy metals and non-metallic elements affect human health and bacterial diversity in cornfields and to explore the contribution of soil bacteria to heavy metal accumulation in crops. Soil samples were collected from five counties in Shandong Province, China, where abnormally high levels of heavy metals and metalloids were caused by mining and heavy industry. We calculated a hazard quotient (HQ) to evaluate the health risk these heavy metals cause and analyzed the soil bacterial community using 16S rRNA gene sequencing. The HQ results showed that As posed the greatest threat to human health followed by Pb although concentrations of all metals did not reach the health risk threshold. Meanwhile, principal component analysis (PCA) and redundancy analysis (RDA) revealed soil bacterial richness was significantly influenced by As, Ni, and Cr as well as pH and phosphorus, but not by the species diversity of aboveground weeds. The most abundant bacteria in our study region were heavy metal tolerant groups, specifically Actinobacteria and Proteobacteria. Moreover, correlation analysis suggested that Actinobacteria might reduce the phytoaccumulation of Cr, Cu, Zn, and Hg in corn, while Proteobacteria might weaken phytoaccumulation of Pb, Ni, As, and Cd. Our results verified that heavy metals play an important role in shaping the soil bacterial community. Using native bacteria in farmland provides a potential biological strategy for reducing the health risk posed by heavy metals related to food consumption.
机译:科学家越来越意识到,土壤中特别是农田生态系统中的重金属污染会对人类健康产生负面影响,并改变细菌群落,而细菌群落对植物的生长和重金属​​的积累起着至关重要的作用。本文的目的是揭示玉米田中各种重金属和非金属元素如何影响人类健康和细菌多样性,并探讨土壤细菌对农作物重金属积累的贡献。从中国山东省的五个县收集了土壤样品,这些县的采矿和重工业造成了异常高水平的重金属和准金属。我们计算了危险商(HQ)以评估这些重金属造成的健康风险,并使用16S rRNA基因测序分析了土壤细菌群落。总部的结果显示,尽管所有金属的浓度均未达到健康风险阈值,但砷对人体健康的威胁最大,其次是铅。同时,主成分分析(PCA)和冗余分析(RDA)表明,土壤细菌的丰富度受砷,镍和铬以及pH和磷的显着影响,但不受地上杂草物种多样性的影响。在我们的研究区域中,细菌最多的是重金属耐受组,特别是放线菌和变形杆菌。此外,相关分析表明放线菌可能减少玉米中Cr,Cu,Zn和Hg的植物蓄积,而变形杆菌可能会削弱Pb,Ni,As和Cd的植物蓄积。我们的结果证明,重金属在塑造土壤细菌群落中起着重要作用。在农田中使用天然细菌为减少与食物消费相关的重金属构成的健康风险提供了潜在的生物学策略。

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