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Microbial communities and arsenic biogeochemistry at the outflow of an alkaline sulfide-rich hot spring

机译:富含碱性硫化物的温泉流出处的微生物群落和砷生物地球化学

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摘要

Alkaline sulfide-rich hot springs provide a unique environment for microbial community and arsenic (As) biogeochemistry. In this study, a representative alkaline sulfide-rich hot spring, Zimeiquan in the Tengchong geothermal area, was chosen to study arsenic geochemistry and microbial community using Illumina MiSeq sequencing. Over 0.26 million 16S rRNA sequence reads were obtained from 5-paired parallel water and sediment samples along the hot spring’s outflow channel. High ratios of As(V)/AsSum (total combined arsenate and arsenite concentrations) (0.59–0.78), coupled with high sulfide (up to 5.87 mg/L), were present in the hot spring’s pools, which suggested As(III) oxidation occurred. Along the outflow channel, AsSum increased from 5.45 to 13.86 μmol/L, and the combined sulfide and sulfate concentrations increased from 292.02 to 364.28 μmol/L. These increases were primarily attributed to thioarsenic transformation. Temperature, sulfide, As and dissolved oxygen significantly shaped the microbial communities between not only the pools and downstream samples, but also water and sediment samples. Results implied that the upstream Thermocrinis was responsible for the transformation of thioarsenic to As(III) and the downstream Thermus contributed to derived As(III) oxidation. This study improves our understanding of microbially-mediated As transformation in alkaline sulfide-rich hot springs.
机译:富含碱性硫化物的温泉为微生物群落和砷(As)生物地球化学提供了独特的环境。在这项研究中,选择了腾冲地热地区的一个有代表性的富含碱金属硫化物的温泉子紫泉泉,使用Illumina MiSeq测序研究砷的地球化学和微生物群落。在温泉的流出通道中,从5对平行的水和沉积物样本中获得了超过26万条16S rRNA序列读数。温泉池中存在很高的As(V)/ AsSum比(砷和砷的总浓度之和)(0.59–0.78),以及高硫化物(高达5.87 mg / L),这表明As(III)发生氧化。沿流出通道,AsSum从5.45增加到13.86μmol/ L,硫化物和硫酸盐的总浓度从292.02增加到364.28μmol/ L。这些增加主要归因于硫代砷的转化。温度,硫化物,砷和溶解氧不仅影响水池和下游样品之间的微生物群落,而且还显着影响水和沉积物样品之间的微生物群落。结果表明上游的Thermocrinis负责硫代砷向As(III)的转化,而下游的Thermus有助于衍生出As(III)的氧化。这项研究提高了我们对富含碱性硫化物的温泉中微生物介导的砷转化的理解。

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