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Diversity of Microorganisms in Fe-As-Rich Acid Mine Drainage Waters of Carnoulès France

机译:法国卡诺鲁斯富铁砷酸矿山排泄水中微生物的多样性

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摘要

The acid waters (pH 2.7 to 3.4) originating from the Carnoulès mine tailings contain high concentrations of dissolved arsenic (80 to 350 mg · liter−1), iron (750 to 2,700 mg · liter−1), and sulfate (2,000 to 7,500 mg · liter−1). During the first 30 m of downflow in Reigous creek issuing from the mine tailings, 20 to 60% of the dissolved arsenic is removed by coprecipitation with Fe(III). The microbial communities along the creek have been characterized using terminal-restriction fragment length polymorphism (T-RFLP) and 16S rRNA gene library analyses. The results indicate a low bacterial diversity in comparison with unpolluted water. Eighty percent of the sequences obtained are related to sequences from uncultured, newly described organisms or recently associated with acid mine drainage. As expected owing to the water chemistry, the sequences recovered are mainly related to bacteria involved in the geochemical Fe and S cycles. Among them, sequences related to uncultured TrefC4 affiliated with Gallionella ferruginea, a neutrophilic Fe-oxidizing bacterium, are dominant. The description of the bacterial community structure and its dynamics lead to a better understanding of the natural remediation processes occurring at this site.
机译:来自卡努勒斯矿山尾矿的酸性水(pH 2.7至3.4)含有高浓度的溶解砷(80至350 mg·升 -1 ),铁(750至2,700 mg·升) -1 )和硫酸盐(2,000至7,500 mg·升 -1 )。在矿山尾矿产生的瑞吉斯小溪下流的前30 m,通过与Fe(III)的共沉淀去除了20%至60%的溶解砷。利用末端限制性片段长度多态性(T-RFLP)和16S rRNA基因文库分析对小河沿岸的微生物群落进行了表征。结果表明与未污染的水相比细菌多样性低。获得的序列的百分之八十与未培养的,新近描述的生物的序列有关,或者与最近与酸性矿山排水有关。如预期的那样,由于水的化学作用,回收的序列主要与地球化学的Fe和S循环中涉及的细菌有关。其中,与嗜中性铁氧化细菌铁孢菌(Gallionella ferruginea)相关的未培养TrefC4相关的序列占主导。对细菌群落结构及其动力学的描述使人们对在该地点发生的自然修复过程有了更好的了解。

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