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首页> 外文期刊>Journal of Microbiology >Bacterial diversity and composition of an alkaline uranium mine tailings-water interface
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Bacterial diversity and composition of an alkaline uranium mine tailings-water interface

机译:碱性铀矿尾矿-水界面的细菌多样性和组成

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The microbial diversity and biogeochemical potential associated with a northern Saskatchewan uranium mine water-tailings interface was examined using culture-dependent and -independent techniques. Morphologically-distinct colonies from uranium mine water-tailings and a reference lake (MC) obtained using selective and non-selective media were selected for 16S rRNA gene sequencing and identification, revealing that culturable organisms from the uranium tailings interface were dominated by Firmicutes and Betaproteobacteria; whereas, MC organisms mainly consisted of Bacteroidetes and Gammaproteobacteria. Ion Torrent (IT) 16S rRNA metagenomic analysis carried out on extracted DNA from tailings and MC interfaces demonstrated the dominance of Firmicutes in both of the systems. Overall, the tailings-water interface environment harbored a distinct bacterial community relative to the MC, reflective of the ambient conditions (i.e., total dissolved solids, pH, salinity, conductivity, heavy metals) dominating the uranium tailings system. Significant correlations among the physicochemical data and the major bacterial groups present in the tailings and MC were also observed. Presence of sulfate reducing bacteria demonstrated by culture-dependent analyses and the dominance of Desulfosporosinus spp. indicated by Ion Torrent analyses within the tailings-water interface suggests the existence of anaerobic microenvironments along with the potential for reductive metabolic processes.
机译:萨斯喀彻温省北部铀矿水-尾矿界面的微生物多样性和生物地球化学潜力已使用依赖于文化和不依赖文化的技术进行了研究。铀矿水尾的形态上不同的菌落以及使用选择性和非选择性培养基获得的参考湖(MC)被选择用于16S rRNA基因测序和鉴定,表明铀尾矿界面的可培养生物主要由Firmicutes和Betaproteobacteria主导。 ;而MC生物主要由拟杆菌和γ-变形杆菌组成。对从尾矿和MC界面提取的DNA进行的离子激流(IT)16S rRNA宏基因组学分析证明了Firmicutes在这两个系统中的优势。总体而言,尾矿与水的界面环境相对于MC具有独特的细菌群落,反映了铀尾矿系统中所处的环境条件(即,总溶解固体,pH,盐度,电导率,重金属)。还观察到理化数据与尾矿和MC中存在的主要细菌群之间存在显着相关性。硫酸盐还原菌的存在通过培养依赖性分析和Desulfosporosinus spp的优势证明。尾矿-水界面中的离子激流分析表明,厌氧微环境的存在以及还原性代谢过程的潜力。

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