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Microbial populations in acid mineral bioleaching systems of Tong Shankou Copper Mine, China

机译:铜山口铜矿酸性矿物生物浸出系统中的微生物种群

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To understand the composition and structure of microbial communities in different acid mineral bioleaching systems, and to present a more complete picture of microbially mediated acid mine drainage production. In Tong Shankou Copper Mine, China, two samples (named K1 and K2) from two different sites with bioleaching were studied. A bacterial 16S rDNA library and an archaeal 16S rDNA library of the sample from each site were constructed by 16S rDNA polymerase chain reaction (PCR), restriction fragment length polymorphism (RFLP) and sequencing. A total of 18 bacterial representative sequences and 12 archaeal representative sequences were obtained. Phylogenetic analysis indicated that 77p"09% of the total bacterial clones were affiliated with Proteobacteria, and 21p"22% of the total bacterial clones were closely related to Nitrospira. The rest of the bacterial clones were related to Firmicutes (1p"68%). Sequences affiliated with the archaea of the Thermoplasma and Ferroplasma lineages were detected abundantly in the two samples. Unexpectedly, sequences affiliated with Sulfolobales and Methanothermus genera were also detected. The molecular studies appear to be consistent with the environmental conditions existing at the sites, which coincides with previous studies. High concentrations of some elements (such as copper, iron and sulfur) seemed to be the key factors resulting in the diverse distribution of typical iron-oxidizing bacteria such as Leptospirillum species and Acidithiobacillus ferrooxidans. Research on micro-organisms present in bioleaching systems especially archaea is not abundant. The acidophiles in the two bioleaching sites obtained from Tong Shankou Copper Mine, China, have not been reported until now. These results may expand our knowledge of the microbial diversity in the acid mineral bioleaching systems.
机译:了解不同酸性矿物质生物浸出系统中微生物群落的组成和结构,并提供微生物介导的酸性矿山排水生产的更完整图景。在中国铜山口铜矿,研究了来自两个不同地点生物浸出的两个样品(分别为K1和K2)。通过16S rDNA聚合酶链反应(PCR),限制性片段长度多态性(RFLP)和测序,构建了每个位点的细菌16S rDNA文库和古细菌16S rDNA文库。总共获得了18个细菌代表序列和12个古细菌代表序列。系统发育分析表明,总细菌克隆中有77p“ 09%与变形杆菌有关,而总细菌克隆中有21p” 22%与硝化螺菌密切相关。其余的细菌克隆均与Firmicutes有关(1p“ 68%)。在两个样本中大量检测到与嗜热和古细菌的古细菌相关的序列,出乎意料的是,还检测到与硫磺草属和Methanothermus属相关的序列。分子研究似乎与现场存在的环境条件相吻合,这与以前的研究相吻合,某些元素(例如铜,铁和硫)的高浓度似乎是导致典型铁的多样性分布的关键因素。氧化细菌,如钩端螺旋体属物种和铁氧化酸性硫杆菌属细菌,对生物浸出系统(尤其是古细菌)中存在的微生物的研究还不多,到目前为止,尚无关于从中国桐山口铜矿获得的两个生物浸出场中嗜酸菌的报道。可能会扩展我们对酸性矿物生物浸出系统中微生物多样性的了解茎。

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