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Biodiversity, metabolism and applications of acidophilic sulfur-metabolizing microorganisms (Short Survey)

机译:嗜酸硫代谢微生物的生物多样性,代谢和应用(简短调查)

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Extremely acidic, sulfur-rich environments can be natural, such as solfatara fields in geothermal and volcanic areas, or anthropogenic, such as acid mine drainage waters. Many species of acidophilic bacteria and archaea are known to be involved in redox transformations of sulfur, using elemental sulfur and inorganic sulfur compounds as electron donors or acceptors in reactions involving between one and eight electrons. This minireview describes the nature and origins of acidic, sulfur-rich environments, the biodiversity of sulfur-metabolizing acidophiles, and how sulfur is metabolized and assimilated by acidophiles under aerobic and anaerobic conditions. Finally, existing and developing technologies that harness the abilities of sulfur-oxidizing and sulfate-reducing acidophiles to extract and capture metals, and to remediate sulfur-polluted waste waters are outlined.
机译:极度酸性,富含硫的环境可以是自然的,例如地热和火山地区的solfatara田地,也可以是人为的,例如酸性矿山排水。已知许多嗜酸细菌和古细菌都参与硫的氧化还原转化,在涉及1至8个电子的反应中,使用元素硫和无机硫化合物作为电子供体或受体。这份简短的综述描述了酸性,富硫环境的性质和起源,硫代谢嗜酸菌的生物多样性,以及在好氧和厌氧条件下嗜酸菌如何代谢和吸收硫。最后,概述了利用硫氧化性和硫酸盐还原性嗜酸菌提取和捕获金属以及治理被硫污染的废水的能力的现有技术和开发技术。

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