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Microbiological monitoring of acid mine drainage treatment systems and aquatic surroundings using real-time PCR

机译:使用实时PCR对酸性矿山排水处理系统和水生环境进行微生物监测

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摘要

In general, acid mine drainage (AMD) causes low pH and high metal concentrations in mining areas and surroundings. The aim of this research was to achieve microbiological monitoring for AMD and to assess whether mine water outflows have any ecological effects on the aqueous ecosystem receiving effluents from different types of treatment system. The water quality of aquatic sample was analyzed and the molecular biological diversity of the samples was assessed using 16S rRNA methods, which were implemented to determine which bacteria existed throughout various unit processes for different AMD treatment systems and their receiving water environments. Acidiphilium cryptum, a heterotrophic acidophile, was found at the AMD sites, and Rhodoferax ferrireducens, which can reduce iron using insoluble Fe(III) as an electron acceptor, was detected at many AMD treatment facilities and downstream of the treatment processes. Subsequently, quantitative real-time PCR was conducted on specific genes of selected bacteria. Surprisingly, obvious trends were observed in the relative abundance of the various bacteria that corresponded to the water quality analytical results. The copy number of Desulfosporosinus orientus, a sulfate reducing bacteria, was also observed to decrease in response to decreases in metals according to the downstream flow of the AMD treatment system.
机译:通常,酸性矿山排水(AMD)会导致矿区和周围地区的pH值低和金属浓度高。这项研究的目的是实现对AMD的微生物监测,并评估矿井水流出是否对接收来自不同类型处理系统的废水的水生生态系统产生任何生态影响。分析了水生样品的水质,并使用16S rRNA方法评估了样品的分子生物学多样性,该方法用于确定在不同AMD处理系统及其接收水环境的各个单元过程中存在哪些细菌。在AMD地点发现了嗜酸嗜酸菌嗜酸菌,在许多AMD处理设施和处理过程的下游发现了可使用不溶性Fe(III)作为电子受体还原铁的红景天铁还原菌。随后,对所选细菌的特定基因进行了定量实时PCR。出乎意料的是,在与水质分析结果相对应的各种细菌的相对丰度中观察到了明显的趋势。根据AMD处理系统的下游流程,还观察到东方脱硫孢子菌(一种减少硫酸盐的细菌)的拷贝数响应于金属含量的减少而降低。

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