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Bacterial Community Changes with Depth and Metal Geochemistry in Spent Ore Gold Heap Leach

机译:在矿石金堆浸出中,细菌群体随着深度和金属地球化学而变化

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Bacterial communities from a spent ore gold heap leach facility were characterized using SSU rRNA gene pyrosequencing to assess population distributions and potential impacts for in situ biomining. Methods for nucleic acid extraction from spent rock were optimized and the sequences were assessed with various quality controls, e.g., sub-sampling to reduce over-estimation of species richness as well as comparison of adaptor-ligation or fusion primer prepared samples. Predominant microbial populations at certain sampling depths included Proteobacteria-like sequences. Multiple populations could be classified into 'functional groups', e.g., organic acid production, metal-oxidation, sulfur-oxidation, and cyanide production/degradation, which are all biogeochemical processes relevant to biomining. These results demonstrated that bacterial communities could be assessed via pyrosequencing and that microbial community structure was impacted by sample depth and metal levels. A better understanding of the interactions between microbes and the local environment will allow improved design of in situ engineering configurations that stimulate microbial activities for more efficient metal recovery and subsequent site maintenance.
机译:使用SSU rRNA基因焦磷酸测序,以评估人口分布和潜在影响,原位生物采矿从废矿金堆浸设施的细菌群落进行了表征。用于从废岩石核酸提取方法进行了优化和序列进行了评估具有各种质量控制,例如,物种的子采样,以减少过度估计丰富度以及适配器结扎或融合引物的比较而准备的样品。在某些采样深度主要微生物种群包括变形菌样序列。多个群体可以被分类为“官能团”,例如,有机酸的生产,金属氧化,硫氧化,和氰化物生产/降解,这是相关的生物采矿所有生物地球化学过程。这些结果表明,细菌群落可以通过焦磷酸测序和微生物群落结构通过样本深度和金属水平的影响进行评估。更好地了解微生物和当地环境之间的相互作用将使刺激更有效的金属回收和随后的现场维护微生物活动现场工程结构的改进设计。

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