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The bacterial community structure and functional profile in the heavy metal contaminated paddy soils surrounding a nonferrous smelter in South Korea

机译:韩国有色金属冶炼厂周围重金属污染的稻田土壤中的细菌群落结构和功能特征

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摘要

The pollution of agricultural soils by the heavy metals affects the productivity of the land and has an impact on the quality of the surrounding ecosystems. This study investigated the bacterial community structure in the heavy metal contaminated sites along a smelter and a distantly located paddy field to elucidate the factors that are related to the alterations of the bacterial communities under the conditions of heavy metal pollution. Among the study sites, the bacterial communities in the soil did not show any significant differences in their richness and diversity. The soil bacterial communities at the three study sites were distinct from one another at each site, possessing a distinct set of bacterial phylotypes. Among the study sites, significant changes were observed in the abundances of the bacterial phyla and genera. The variations in the bacterial community structure were mostly related to the general soil properties at the phylum level, while at the finer taxonomic levels, the concentrations of arsenic (As) and lead (Pb) were the significant factors, affecting the community structure. The relative abundances of the genera Desulfatibacillum and Desulfovirga were negatively correlated to the concentrations of As, Pb, and cadmium (Cd) in the soil, while the genus Bacillus was positively correlated to the concentrations of As and Cd. According to the results of the prediction of bacterial community functions, the soil bacterial communities of the heavy metal polluted sites were characterized by the more abundant enzymes involved in DNA replication and repair, translation, transcription, and the nucleotide metabolism pathways, while the amino acid and lipid metabolism, as well as the biodegradation potential of xenobiotics, were reduced. Our results showed that the adaptation of the bacterial communities to the heavy metal contamination was predominantly attributed to the replacement process, while the changes in community richness were linked to the variations in the soil pH values.
机译:重金属污染农业土壤会影响土地的生产力,并影响周围生态系统的质量。这项研究调查了沿冶炼厂和远处稻田的重金属污染场所的细菌群落结构,以阐明与重金属污染条件下细菌群落变化有关的因素。在研究地点之间,土壤中的细菌群落在其丰富度和多样性上没有显示任何显着差异。三个研究地点的土壤细菌群落在每个地点彼此不同,具有不同的细菌系统型。在研究地点中,观察到细菌门和属的丰度发生了显着变化。细菌群落结构的变化主要与菌门水平的一般土壤特性有关,而在较精细的分类学水平下,砷(As)和铅(Pb)的浓度是影响群落结构的重要因素。 Desulfatibacillum和Desulfovirga属的相对丰度与土壤中As,Pb和镉(Cd)的含量呈负相关,而芽孢杆菌属与As和Cd的含量呈正相关。根据细菌群落功能预测的结果,重金属污染位点的土壤细菌群落的特征是参与DNA复制和修复,翻译,转录和核苷酸代谢途径的酶含量更高,而氨基酸脂质代谢以及异生物素的生物降解潜能都降低了。我们的结果表明,细菌群落对重金属污染的适应主要归因于置换过程,而群落丰富度的变化与土壤pH值的变化有关。

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