Environmental Microbiology and Genomics Laboratory, Department of Biotechnology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721302, India.
Kolkata Zonal Centre, CSIR-National Environmental Engineering Research Institute, Kolkata, West Bengal, 700107, India.
World J Microbiol Biotechnol. 2020 Jun 2;36(6):87. doi: 10.1007/s11274-020-02860-z.
The role of indigenous bacteria in mobilization of sediment bound arsenic (As) into groundwater is investigated using subsurface sediment from Brahmaputra River Basin (BRB) and the Bacillus sp. strain IIIJ3-1, an indigenous species to BRB. Anaerobic sediment microcosms with varying organic carbon sources and terminal electron acceptors (TEAs) are used to illustrate the role of the test bacterium in As mobilization. The aquifer sediment shows an asymmetric distribution of As and Fe in its different phases. Among the TEAs added, NO amendment promotes higher cell growth, oxalic acid production and maximum release of sediment bound As. X-ray diffraction analysis further suggests that weathering of As bearing secondary minerals through bacterial action enhances As bioavailability, followed by dissimilatory reduction and thus promotes its mobilization into aqueous phase. Co-release pattern of other elements from the sediment indicates that release of As is decoupled from that of Fe. This study confirms that microbe-mediated mineral weathering followed by respiratory reduction of As facilitates mobilization of sediment hosted As into aqueous phase, and provides a better insight into the catabolic ability of groundwater bacteria in mobilization of sediment hosted As in BRB region.
利用来自布拉马普特拉河流域(BRB)的地下沉积物和 BRB 本地物种芽孢杆菌 IIIJ3-1 研究了土著细菌在将沉积物结合的砷(As)动员到地下水中的作用。使用具有不同有机碳源和末端电子受体(TEA)的厌氧沉积物微宇宙来说明测试细菌在 As 动员中的作用。含水层沉积物在其不同相中表现出 As 和 Fe 的不对称分布。在所添加的 TEA 中,NO 添加剂促进了更高的细胞生长、草酸的产生和最大程度地释放沉积物结合的 As。X 射线衍射分析进一步表明,通过细菌作用风化含 As 的次生矿物可提高 As 的生物利用度,随后进行异化还原,从而促进其向水相迁移。从沉积物中其他元素的共同释放模式表明,As 的释放与 Fe 的释放解耦。本研究证实,微生物介导的矿物风化,随后是 As 的呼吸还原,有助于将沉积物中所含的 As 动员到水相,从而更好地了解地下水细菌在 BRB 地区动员沉积物中所含 As 的代谢能力。