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Efficient Arsenic Methylation and Volatilization Mediated by a Novel Bacterium from an Arsenic-Contaminated Paddy Soil

机译:由受砷污染的水稻土中的新型细菌介导的有效砷甲基化和挥发

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摘要

Microbial arsenic (As) methylation and volatilization are important processes controlling the As biogeochemical cycle in paddy soils. To further understand these processes, we isolated a novel bacterial strain, SM-1, from an As-contaminated paddy soil. SM-1 showed strong As methylation and volatilization abilities, converting almost all arsenite (10 µM) to dimethylarsenate and trimethylarsenic oxide in the medium and trimethylarsine gas into the headspace within 24 h, with trimethylarsine accounting for nearly half of the total As. On the basis of the 16S rRNA sequence, strain SM-1 represents a new species in a new genus within the family Cytophagaceae. Strain SM-1 is abundant in the paddy soil and inoculation of SM-1 greatly enhanced As methylation and volatilization in the soil. An arsenite methyltransferase gene (ArarsM) was cloned from SM-1. When expressed in Escherichia coli, ArArsM conferred the As methylation and volatilization abilities to E. coli and increased its resistance to arsenite. The high As methylation and volatilization abilities of SM-1 are likely attributed to an efficient ArArsM enzyme coupled with low arsenite efflux. These results suggest that strain SM-1 plays an important role in As methylation and volatilization in the paddy soil and has a great potential for As bioremediation.
机译:微生物砷(As)的甲基化和挥发是控制稻田土壤As生物地球化学循环的重要过程。为了进一步了解这些过程,我们从被As污染的水稻土中分离了一种新型细菌菌株SM-1。 SM-1表现出很强的砷甲基化和挥发能力,几乎在24小时内将中等介质中的所有砷(10 µM)砷酸二甲酯和三甲基氧化砷和三甲基ar气体转化为顶空,其中三甲基ar占总砷的近一半。根据16S rRNA序列,菌株SM-1代表了细胞吞噬菌科的一个新属。水稻土中SM-1菌株丰富,SM-1的接种随着土壤中甲基化和挥发的增加而大大增强。从SM-1克隆了亚砷酸甲基转移酶基因(ArarsM)。当在大肠杆菌中表达时,ArArsM赋予了As甲基化和对大肠杆菌的挥发能力,并增强了其对亚砷酸盐的抗性。 SM-1的高砷甲基化和挥发能力可能归因于有效的ArArsM酶和低砷的外排。这些结果表明,菌株SM-1在稻田土壤As的甲基化和挥发中起重要作用,并且具有As生物修复的巨大潜力。

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