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微生物对华北平原深层地下水中碘富集的贡献。

Microbial Contributions to Iodide Enrichment in Deep Groundwater in the North China Plain.

机构信息

School of Environmental Studies, China University of Geosciences, Wuhan 430074, Hubei, China.

State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Wuhan 430074, Hubei, China.

出版信息

Environ Sci Technol. 2023 Feb 14;57(6):2625-2635. doi: 10.1021/acs.est.2c06657. Epub 2023 Jan 20.

Abstract

Microorganisms play crucial roles in the global iodine cycling through iodine oxidation, reduction, volatilization, and deiodination. In contrast to iodate formation in radionuclide-contaminated groundwater by the iodine-oxidizing bacteria, microbial contribution to the formation of high level of iodide in geogenic high iodine groundwater is poorly understood. In this study, our results of comparative metagenomic analyses of deep groundwater with typical high iodide concentrations in the North China Plain revealed the existence of putative dissimilatory iodate-reducing gene clusters in groundwater. Heterologous expression and characterization of an identified gene cluster confirmed its functional role in iodate reduction. Thus, microbial dissimilatory iodate reduction could contribute to iodide formation in geogenic high iodine groundwater. In addition, the identified iron-reducing, sulfur-reducing, sulfur-oxidizing, and dehalogenating bacteria in the groundwater could contribute to the release and production of iodide through the reductive dissolution of iron minerals, abiotic iodate reduction of derived ferrous iron and sulfide, and dehalogenation of organic iodine, respectively. These microbially mediated iodate reduction and organic iodine dehalogenation processes may also result in the transformation among iodine species and iodide enrichment in other geogenic iodine-rich groundwater systems worldwide.

摘要

微生物通过碘的氧化、还原、挥发和脱碘作用,在全球碘循环中发挥着关键作用。与放射性核素污染地下水中碘氧化菌形成碘酸盐不同,微生物对地球高碘地下水中高浓度碘化物形成的贡献还不太清楚。在这项研究中,我们对中国北方平原典型高碘深层地下水中碘的比较宏基因组分析结果表明,地下水中存在异化碘酸盐还原基因簇。对鉴定出的基因簇的异源表达和特性分析证实了其在碘酸盐还原中的功能作用。因此,微生物异化碘酸盐还原可能有助于地球高碘地下水中碘化物的形成。此外,地下水中鉴定出的铁还原菌、硫还原菌、硫氧化菌和脱卤菌可以通过铁矿物的还原溶解、衍生亚铁和硫化物的非生物碘酸盐还原以及有机碘的脱卤作用,分别将碘释放和生成碘化物。这些微生物介导的碘酸盐还原和有机碘脱卤过程也可能导致碘物种之间的转化和其他地球高碘富碘地下水中碘化物的富集。

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