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Diversity of Betaproteobacteria revealed by novel primers suggests their role in arsenic cycling

机译:新型引物揭示的β-变形细菌多样性表明它们在砷循环中的作用

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摘要

High arsenic concentration in groundwater is a severe environmental problem affecting human health, particularly in countries of South and South-East Asia. The Bengal Delta Plain (BDP) distributed within India and Bangladesh is a major arsenic-affected region where groundwater is the primary source of drinking water. Previous studies have indicated that members of the bacterial class constitute a major fraction of the microbial community in many of the aquifers within this region. Bacteria belonging to this class are known to be involved in redox cycling of arsenic as well as other metals such iron and manganese, thereby impacting arsenic mobilization and immobilization. While microbial diversity in arsenic-contaminated environments is generally assessed using universal 16S rRNA gene primers, targeted evaluation of Betaproteobacteria diversity remains poorly constrained. In this study, bacterial diversity was investigated in the groundwater from two shallow aquifers (West Bengal, India) based on 16S rRNA gene clone libraries and sequencing using a custom-designed pair of primers specific to . Specificity of the primers was confirmed as well as by the absence of PCR amplification of other bacterial classes. Four major families ( , , and ) were detected among which members of represented 59% and 71% of the total community in each aquifer. The four OTUs (operational taxonomic units; 97% sequence identity) within were close phylogenetic relatives of bacteria within the genus known to solubilize phosphate minerals. Additionally, the OTUs belonging to were closely related to the members of the genera and , known to oxidize iron under microaerophilic conditions. These results suggest that members of can potentially influence iron and phosphorus cycling which can influence biogeochemistry in arsenic-contaminated aquifers of the BDP.
机译:地下水中高浓度的砷是影响人类健康的严重环境问题,尤其是在南亚和东南亚国家。分布在印度和孟加拉国的孟加拉三角洲平原(BDP)是受砷影响的主要地区,地下水是饮用水的主要来源。先前的研究表明,细菌类别的成员构成了该区域许多含水层中微生物群落的主要部分。已知属于此类的细菌参与砷以及其他金属如铁和锰的氧化还原循环,从而影响砷的动员和固定。虽然通常使用通用的16S rRNA基因引物评估砷污染环境中的微生物多样性,但对Betaproteobacteria多样性的靶向评估仍然受到约束。在这项研究中,根据16S rRNA基因克隆库并使用定制的一对特异引物进行测序,研究了两个浅层含水层(印度西孟加拉邦)地下水中的细菌多样性。通过不存在其他细菌类别的PCR扩增,可以确认引物的特异性。检测到四个主要家庭(,和),其中每个含水层中分别占总社区的59%和71%的成员。其中的四个OTU(可操作的分类单位; 97%的序列同一性)是已知可溶解磷酸盐矿物质的细菌属的近亲亲缘关系。另外,属于的OTU与该属的成员密切相关,并且已知在微需氧条件下会氧化铁。这些结果表明,BDP的成员可能潜在地影响铁和磷的循环,从而影响BDP被砷污染的含水层中的生物地球化学。

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