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Diversity of arsenite oxidizing bacterial communities in arsenic-rich deltaic aquifers in West Bengal India

机译:印度西孟加拉邦富含砷的三角洲含水层中砷氧化细菌群落的多样性

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摘要

High arsenic (As) concentration in groundwater has affected human health, particularly in South-East Asia putting millions of people at risk. Biogeochemical cycling of As carried out by different bacterial groups are suggested to control the As fluxes in aquifers. A functional diversity approach in link with As precipitation was adopted to study bacterial community structures and their variation within the As contaminated Bengal Delta Plain (BDP) aquifers of India. Groundwater samples collected from two shallow aquifers in Karimpur II (West Bengal, India), during years 2010 and 2011, were investigated to trace the effects immediately after monsoon period (precipitation) on community structure and diversity of bacterial assemblages with a focus on arsenite oxidizing bacterial phyla for two successive years. The study focused on amplification, clone library generation and sequencing of the arsenite oxidase large sub-unit gene aioA and 16S rRNA marker, with respect to changes in elemental concentrations. New set of primers were designed to amplify the aioA gene as a phylogenetic marker to study taxonomically diverse arsenite oxidizing bacterial groups in these aquifers. The overall narrow distribution of bacterial communities based on aioA and 16S rRNA sequences observed was due to poor nutrient status and anoxic conditions in these As contaminated aquifers. Proteobacteria was the dominant phylum detected, within which Acidovorax, Hydrogenophaga, Albidiferax, Bosea, and Polymorphum were the major arsenite oxidizing bacterial genera based on the number of clones sequenced. The structure of bacterial assemblages including those of arsenite oxidizing bacteria seems to have been affected by increase in major elemental concentrations (e.g., As, Fe, S, and Si) within two sampling sessions, which was supported by statistical analyses. One of the significant findings of this study is detection of novel lineages of 16S rRNA-like bacterial sequences indicating presence of indigenous bacterial communities BDP wells that can play important role in biogeochemical cycling of elements including As.
机译:地下水中高浓度的砷已经影响到人类健康,特别是在东南亚,使数百万人处于危险之中。建议通过不同细菌群进行的砷的生物地球化学循环来控制含水层中的砷通量。采用一种与砷沉淀相关的功能多样性方法来研究印度砷污染的孟加拉三角洲平原(BDP)含水层中的细菌群落结构及其变异。调查了2010年和2011年从Karimpur II(印度西孟加拉邦)的两个浅层含水层收集的地下水样本,以追踪季风期(降水)后立即对群落结构和细菌群落多样性的影响,重点是亚砷酸盐氧化细菌门连续两年。该研究集中于砷,氧化酶大亚基基因aioA和16S rRNA标记的扩增,克隆文库的产生和测序,以及元素浓度的变化。设计了一组新的引物,以扩增aioA基因作为系统发育标记,以研究这些含水层中分类学上不同的亚砷酸氧化细菌群。基于aioA和16S rRNA序列观察到的细菌群落总体狭窄分布是由于这些被As污染的含水层中营养状况差和缺氧条件所致。变形杆菌是检测到的优势种,根据已测序克隆的数量,其中嗜酸杆菌属,加氢菌属,Albidiferax,Bosea和Polymorphum是主要的亚砷酸盐氧化细菌属。包括砷氧化细菌在内的细菌集合体的结构似乎已受到两个采样周期内主要元素浓度(例如,As,Fe,S和Si)浓度增加的影响,这得到了统计分析的支持。这项研究的重要发现之一是检测到16S rRNA样细菌序列的新谱系,表明存在本地细菌群落BDP孔,这些孔可以在包括As在内的元素的生物地球化学循环中发挥重要作用。

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