Thioarsenate Formation Coupled with Anaerobic Arsenite Oxidation by a Sulfate-Reducing Bacterium Isolated from a Hot Spring

Thioarsenates are common arsenic species in sulfidic geothermal waters, yet little is known about their biogeochemical traits. In the present study, a novel sulfate-reducing bacterial strain TC-1 was isolated from a sulfidic hot spring in Tengchong geothermal area, Yunnan Province, China. The gene,...

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Veröffentlicht in:Frontiers in microbiology 2017-07, Vol.8, p.1336-1336
Hauptverfasser: Wu, Geng, Huang, Liuqin, Jiang, Hongchen, Peng, Yue'e, Guo, Wei, Chen, Ziyu, She, Weiyu, Guo, Qinghai, Dong, Hailiang
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Sprache:eng
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Zusammenfassung:Thioarsenates are common arsenic species in sulfidic geothermal waters, yet little is known about their biogeochemical traits. In the present study, a novel sulfate-reducing bacterial strain TC-1 was isolated from a sulfidic hot spring in Tengchong geothermal area, Yunnan Province, China. The gene, encoding anaerobic arsenite oxidase, was successfully amplified from the genome of strain TC-1, indicating it has a potential ability to oxidize arsenite under anaerobic condition. In anaerobic arsenite oxidation experiments inoculated with strain TC-1, a small amount of arsenate was detected in the beginning but became undetectable over longer time. Thioarsenates (AsO S with = 1-4) formed with mono-, di- and tri-thioarsenates being dominant forms. Tetrathioarsenate was only detectable at the end of the experiment. These results suggest that thermophilic microbes might be involved in the formation of thioarsenates and provide a possible explanation for the widespread distribution of thioarsenates in terrestrial geothermal environments.
ISSN:1664-302X
1664-302X
DOI:10.3389/fmicb.2017.01336