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基于宏基因组学对西孟加拉邦砷污染地区地下水的分析揭示了群落多样性及其代谢潜力。

Metagenome based analysis of groundwater from arsenic contaminated sites of West Bengal revealed community diversity and their metabolic potential.

作者信息

Saha Anumeha, Gupta Abhishek, Sar Pinaki

机构信息

Department of Biotechnology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, India.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2023;58(2):91-106. doi: 10.1080/10934529.2023.2173919. Epub 2023 Feb 28.

Abstract

The study of microbial community in groundwater systems is considered to be essential to improve our understanding of arsenic (As) biogeochemical cycling in aquifers, mainly as it relates to the fate and transport of As. The present study was conducted to determine the microbial community composition and its functional potential using As-contaminated groundwater from part of the Bengal Delta Plain (BDP) in West Bengal, India. Geochemical analyses indicated low to moderate dissolved oxygen (0.42-3.02 mg/L), varying As (2.5-311 µg/L) and Fe (0.19-1.2 mg/L) content, while low concentrations of total organic carbon (TOC), total inorganic carbon (TIC), nitrate, and sulfate were detected. was the most abundant phylum, while the indiscriminate presence of an array of archaeal phyla, , , , etc., was noteworthy. The core community members were affiliated to etc. However, diversity assessed over multiple seasons indicated a shift from to or dominant community, suggestive of microbial response to seasonally fluctuating geochemical stimuli. Taxonomy-based functional potential showed prospects for As biotransformation, methanogenesis, sulfate respiration, denitrification, etc. Thus, this study strengthened existing reports from this region by capturing the less abundant or difficult-to-culture taxa collectively forming a major fraction of the microbial community.

摘要

地下水系统中微生物群落的研究被认为对于增进我们对含水层中砷(As)生物地球化学循环的理解至关重要,主要是因为它与砷的归宿和迁移有关。本研究旨在利用印度西孟加拉邦恒河三角洲平原(BDP)部分地区受砷污染的地下水来确定微生物群落组成及其功能潜力。地球化学分析表明溶解氧含量低至中等(0.42 - 3.02毫克/升),砷(2.5 - 311微克/升)和铁(0.19 - 1.2毫克/升)含量各异,同时检测到低浓度的总有机碳(TOC)、总无机碳(TIC)、硝酸盐和硫酸盐。 是最丰富的门类,而一系列古菌门类如 、 、 、 等的普遍存在值得注意。核心群落成员隶属于 等。然而,多个季节的多样性评估表明从 占主导的群落转变为 或 占主导的群落,这表明微生物对季节性波动的地球化学刺激有响应。基于分类学的功能潜力显示出砷生物转化、甲烷生成、硫酸盐呼吸、反硝化等的前景。因此,本研究通过捕捉共同构成微生物群落主要部分的不太丰富或难以培养的分类群,强化了该地区的现有报告。

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