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首页> 外文期刊>FEMS Microbiology Ecology >Arsenite modifies structure of soil microbial communities and arsenite oxidization potential
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Arsenite modifies structure of soil microbial communities and arsenite oxidization potential

机译:砷改变土壤微生物群落结构和亚砷氧化潜力

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The influence of arsenite [As(III)] on natural microbial communities and the capacity of exposed communities to oxidize As(III) has not been well explored. In this study, we conducted soil column experiments with a natural microbial community exposed to different carbon conditions and a continuous flow of As(III). We measured the oxidation rates of As(III) to As(V), and the composition of the bacterial community was monitored by 454 pyrosequencing of 16S rRNA genes. The diversity of As(III)-oxidizing bacteria was examined with the aox gene, which encodes the enzyme involved in As(III) oxidation. Arsenite oxidation was high in the live soil regardless of the carbon source and below detection in sterilized soil. In columns amended with 200 μmol kg~(-1) of As (III), As(V) concentrations reached 158 μmol kg~(-1) in the column effluent, while As(III) decreased to unmeasurable levels. Although the number of bacterial taxa decreased by as much as twofold in treatments amended with As(III), some As(III)-oxidizing bacterial groups increased up to 20-fold. Collectively, the data show the large effect of As(III) on bacterial diversity, and the capacity of natural communities from a soil with low initial As contamination to oxidize large inputs of As(III).
机译:砷[As(III)]对天然微生物群落的影响以及裸露的群落氧化As(III)的能力尚未得到很好的研究。在这项研究中,我们用暴露于不同碳条件和连续流动的As(III)的天然微生物群落进行了土壤柱实验。我们测量了As(III)到As(V)的氧化速率,并通过454个16S rRNA基因的焦磷酸测序来监测细菌群落的组成。用aox基因检测了As(III)氧化细菌的多样性,该基因编码参与As(III)氧化的酶。无论碳源如何,活土壤中砷的氧化程度都很高,并且在无菌土壤中亚砷酸盐的氧化率低于检出率。在用200μmolkg〜(-1)的As(III)修正的色谱柱中,柱流出物中的As(V)浓度达到158μmolkg〜(-1),而As(III)降至不可测量的水平。尽管在用As(III)修正的处理中细菌类群的数量减少了两倍之多,但一些氧化As(III)的细菌群却增加了20倍。总体而言,数据显示了As(III)对细菌多样性的巨大影响,以及来自初始As污染低的土壤中自然群落氧化大量As(III)的能力。

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