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Microbial diversity in acid mine drainage of Xiang Mountain sulfide mine, Anhui Province, China

机译:安徽省香山硫化物矿山酸性矿山排水中的微生物多样性

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摘要

To understand the composition and structure of microbial communities in acid (pH 3.0) mine drainage (AMD) associated with pyrite mine tailings in Anhui Province, China, molecular diversities of 16S rRNA and 18S rRNA genes were examined using a PCR-based cloning approach. Bacterial, archaeal and microeukaryotic clone libraries were constructed. In contrast to typical dominance of autotrophic acidophiles, genus Acidiphilium, which consists of mixotrophic acidophiles capable of chemoorganotrophic and photosynthetic metabolisms, was the largest group in the bacterial clone library. These mixotrophic organisms may be advantageous in the oligotrophic AMD environment of the study site (certain amounts of dissolved organic carbon and light) by switching between two modes of metabolisms. Unexpectedly, a large fraction of bacterial clones (12.7%) were related to the neutrophilic genus Legionella, which can cause Legionnaires' disease, a potentially lethal pneumonia. The eukaryotic 18S rRNA gene sequences were mostly related to Oxytricha, Nuclearia, and Penicillium. In the archaeal clone library, all the sequences were affiliated to the phylum Crenarchaeota, while the Euryarchaeota was not present.
机译:为了了解中国安徽省与黄铁矿尾矿相关的酸性(pH 3.0)矿井排水(AMD)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 rRNA和18S rRNA基因的分子多样性。构建了细菌,古细菌和微真核克隆文库。与自养嗜酸菌的典型优势相反,由能够进行化学有机营养和光合代谢的混养嗜酸菌组成的嗜酸菌属是细菌克隆文库中的最大群体。通过在两种代谢模式之间切换,这些混合营养生物在研究地点的寡营养AMD环境(某些量的溶解的有机碳和光)中可能是有利的。出乎意料的是,很大一部分细菌克隆(12.7%)与嗜中性军团菌属有关,后者可导致军团菌病,这是一种潜在的致命性肺炎。真核18S rRNA基因序列主要与Oxytricha,Nuclearia和Penicillium有关。在古细菌克隆文库中,所有序列都隶属于Crenarchaeota门,而Euryarchaeota不存在。

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