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Characterization of the Active Bacterial Community Involved in Natural Attenuation Processes in Arsenic-Rich Creek Sediments

机译:富砷河沉积物中自然衰减过程中涉及的活性细菌群落特征

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摘要

Acid mine drainage of the Carnoulès mine (France) is characterized by acid waters containing high concentrations of arsenic and iron. In the first 30 m along the Reigous, a small creek draining the site, more than 38% of the dissolved arsenic was removed by co-precipitation with Fe(III), in agreement with previous studies, which suggest a role of microbial activities in the co-precipitation of As(III) and As(V) with Fe(III) and sulfate. To investigate how this particular ecosystem functions, the bacterial community was characterized in water and sediments by 16S rRNA encoding gene library analysis. Based on the results obtained using a metaproteomic approach on sediments combined with high-sensitivity HPLC-chip spectrometry, several GroEL orthologs expressed by the community were characterized, and the active members of the prokaryotic community inhabiting the creek sediments were identified. Many of these bacteria are β-proteobacteria such as Gallionella and Thiomonas, but γ-proteobacteria such as Acidithiobacillus ferrooxidans and α-proteobacteria such as Acidiphilium, Actinobacteria, and Firmicutes were also detected.
机译:法国卡诺鲁斯(Carnoulès)矿山的酸性矿山排水设施的特点是酸性水中含有高浓度的砷和铁。与先前的研究一致,在沿Reigous的前30 m,一条小河沿排水点流动,通过与Fe(III)的共沉淀去除了38%的溶解砷。 As(III)和As(V)与Fe(III)和硫酸盐的共沉淀。为了研究这个特殊的生态系统如何运作,通过编码基因库分析的16S rRNA在水和沉积物中表征了细菌群落。基于对沉积物采用元蛋白质组学方法并结合高灵敏度HPLC芯片光谱法获得的结果,表征了该群落表达的几个GroEL直系同源物,并鉴定了居住在小河沉积物中的原核生物活性成员。这些细菌中有许多是β变形杆菌,例如Gallionella和Thiomonas,但是也检测到了γ变形杆菌,例如酸性氧化铁硫杆菌和α-变形杆菌,例如嗜酸杆菌,放线菌和Firmicutes。

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