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Microbial diversity in acid mineral bioleaching systems of dongxiang copper mine and Yinshan lead–zinc mine

机译:东乡铜矿和银山铅锌矿酸矿生物浸出系统中的微生物多样性

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摘要

To understand the composition and structure of microbial communities in acid mineral bioleaching systems, the molecular diversity of 16S rDNA genes was examined using a PCR-based cloning approach. A total of 31 Operational Taxonomic Units (OTUs) were obtained from the four samples taken from four different bioleaching sites in Yinshan lead–zinc mine and Dongxiang copper mine in Jiangxi Province, China. The percentages of overlapping OTUs between sites ranged from 22.2 to 50.0%. Phylogenetic analysis revealed that the bacteria present at the four bioleaching sites fell into six divisions, α-Proteobacteria (1.1%), β-Proteobacteria (2.3%), γ-Proteobacteria (30.8%), Firmicutes (15.4%), Actinobacteria (0.3%) and Nitrospira (50.1%). Organisms of genera Leptospirillum, Acidithiobacillus, and Sulfobacillus, which were in Nitrospira, γ-Proteobacteria, and Firmicutes divisions, respectively, were the most dominant. The results of principal component analysis based on the six phylogenetic divisions and biogeochemical data indicated that the microbial community structure of a site was directly related to the biogeochemical characteristic of that site. It follows therefore that sites with similar biogeochemical characteristics were comprised of similar microbial community structures. The results in our study also suggest that the elements copper and arsenic appear to be the key factors affecting the compositions and structures of microbial community in the four bioleaching sites.
机译:为了了解酸性矿物生物浸出系统中微生物群落的组成和结构,使用基于PCR的克隆方法检查了16S rDNA基因的分子多样性。从江西省银山铅锌矿和东乡铜矿的四个不同生物浸出地点采集的四个样本中,总共获得了31个操作分类单位。站点之间重叠OTU的百分比范围为22.2至50.0%。系统发育分析表明,存在于四个生物浸出部位的细菌分为六个部分,α-变形杆菌(1.1%),β-变形细菌(2.3%),γ-变形细菌(30.8%),硬毛菌(15.4%),放线菌(0.3) %)和硝化螺菌(50.1%)。分别位于硝化螺菌属,γ-变形杆菌属和Firmicutes属中的钩端螺旋体属,酸性硫杆菌属和硫杆菌属的生物是最主要的。基于六个系统发生区和生物地球化学数据的主成分分析结果表明,该地点的微生物群落结构与该地点的生物地球化学特征直接相关。因此,具有相似生物地球化学特征的位点由相似的微生物群落结构组成。我们的研究结果还表明,铜和砷元素似乎是影响四个生物浸出部位微生物群落组成和结构的关键因素。

著录项

  • 来源
    《Extremophiles》 |2008年第2期|225-234|共10页
  • 作者单位

    School of Minerals Processing and Bioengineering Central South University Changsha China;

    College of Environmental Science and Engineering Donghua University Shanghai China;

    College of Environmental Science and Engineering Donghua University Shanghai China;

    School of Minerals Processing and Bioengineering Central South University Changsha China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial diversity; RFLP; Bioleaching; AMD;

    机译:微生物多样性RFLP生物浸出AMD;

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