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Diverse arsenic- and iron-cycling microbial communities in arsenic-contaminated aquifers used for drinking water in Bangladesh

机译:在孟加拉国饮用水中的砷污染含水层中的各种砷和铁循环微生物群落

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Subsurface removal of arsenic by injection with oxygenated groundwater has been proposed as a viable technology for obtaining 'safe' drinking water in Bangladesh. While the oxidation of ferrous iron to solid ferric iron minerals, to which arsenic adsorbs, is assumed to be driven by abiotic reactions, metal-cycling microorganisms may potentially affect arsenic removal. A cultivation-independent survey covering 24 drinking water wells in several geographical regions in Bangladesh was conducted to obtain information on microbial community structure and diversity in general, and on specific functional groups capable of the oxidation or reduction of arsenic or iron. Each functional group, targeted by either group-specific 16S rRNA or functional gene amplification, occurred in at least 79% of investigated samples. Putative arsenate reducers and iron-oxidizing Gallionellaceae were present at low diversity, while more variation in potentially arsenite-oxidizing microorganisms and iron-reducing Desulfuromonadales was revealed within and between samples. Relations between community composition on the one hand and hydrochemistry on the other hand were in general not evident, apart from an impact of salinity on iron-cycling microorganisms. Our data suggest widespread potential for a positive contribution of arsenite and iron oxidizers to arsenic removal upon injection with oxygenated water, but also indicate a potential risk for arsenic re-mobilization by anaerobic arsenate and iron reducers once injection is halted.
机译:已经提出了通过注射用氧化地下水进行砷的地下去除作为在孟加拉国获得“安全”饮用水的可行技术。虽然假定砷吸附剂的铁铁氧化到固体铁矿物质,但被认为是非生物反应驱动的,但金属循环微生物可能会影响砷的去除。在孟加拉国的几个地理区域覆盖24个饮用水井的培养型调查,以获得关于微生物群落结构和多样性的信息,以及能够氧化或减少砷或铁的特定官能团。通过组特异性16S rRNA或功能基因扩增的每个官能团靶向,在至少79%的研究样品中发生。推定的砷化物还原剂和铁氧化的Gallionellaceae存在于低多样性,而潜在的砷酸盐氧化微生物和铁还原的脱硫剂大使在样品中显示出更多的变化。另一方面,一方面的社区组成与水质构成的关系一般不明显,除了盐度对铁循环微生物的影响。我们的数据表明,在用含氧水注射时,砷酸盐和铁氧化剂对砷除去的积极贡献的广泛可能性,但也表明一旦注射一次注射一次,厌氧砷酸盐和铁还原剂的潜在风险。

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