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Iron Cycling Potentials of Arsenic Contaminated Groundwater in Bangladesh as Revealed by Enrichment Cultivation

机译:富集耕作揭示孟加拉国受砷污染的地下水的铁循环潜力

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The activities of iron-oxidizing and reducing microorganisms impact the fate of arsenic in groundwater. Phylogenetic information cannot exclusively be used to infer the potential for iron oxidation or reduction in aquifers. Therefore, we complemented a previous cultivation-independent microbial community survey covering 22 arsenic contaminated drinking water wells in Bangladesh, with the characterization of enrichments of microaerophilic iron oxidizers and anaerobic iron reducers, conducted on the same water samples. All investigated samples revealed a potential for microbial iron oxidation and reduction. Microbial communities were phylogenetically diverse within and between enrichments as was also observed in the previous cultivation-independent analysis of the water samples from which these enrichments were derived. Enrichment uncovered a larger diversity in iron-cycling microorganisms than previously indicated. The iron-reducing enrichments revealed the presence of several 16S ribosomal RNA (16S rRNA) gene sequences most closely related to Acetobacterium, Clostridium, Bacillus, Rhizobiales, Desulfovibrio, Bacteroides, and Spirochaetes, in addition to well-known dissimilatory iron-reducing Geobacter and Geothrix species. Although a large diversity of Geobacteraceae was observed, they comprised only a small part of the iron-reducing consortia. Iron-oxidizing gradient tube enrichments were dominated by Comamonadaceae and Rhodocyclaceae instead of Gallionellaceae. Forty-five percent of these enrichments also revealed the presence of the gene encoding arsenite oxidase, which converts arsenite to less toxic and less mobile arsenate. Their potential for ferric (oxyhydr)oxides precipitation and arsenic immobilization makes these iron-oxidizing enrichments of interest for rational bioaugmentation of arsenite contaminated groundwater.
机译:铁氧化和还原微生物的活动影响地下水中砷的命运。系统发育信息不能专门用于推断含水层中铁氧化或还原的可能性。因此,我们补充了先前对孟加拉国22个受砷污染的饮用水井进行的独立于培养的微生物群落调查,并在相同的水样上进行了微需氧铁氧化剂和厌氧铁还原剂的富集表征。所有调查的样品均显示出微生物铁氧化和还原的潜力。在富集内和富集之间,微生物群落在系统发育上也各不相同,正如在先前对这些富集来源的水样进行独立于培养的分析中所观察到的。富集发现铁循环微生物的多样性比以前指出的要大。还原铁的富集表明,除了著名的异化还原铁还原土杆菌和Geothrix种类。尽管观察到的土杆菌科种类繁多,但它们仅占还原铁财团的一小部分。铁氧化梯度管富集主要由Comamonadaceae和Rhodocyclaceae而不是Gallionellaceae组成。这些富集物中的百分之四十五还揭示了编码砷氧化酶的基因的存在,该基因将砷转化为毒性较小且移动性较低的砷酸盐。它们具有潜在的三氧化二铁沉淀和固定砷的特性,使这些氧化铁富集成为对受砷污染的地下水进行合理生物强化的目标。

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