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Characterization of Arsenite-Oxidizing Bacteria Isolated from Arsenic-Rich Sediments Atacama Desert Chile

机译:富含砷沉积物阿塔奇拉沙漠智利分离的砷酸盐氧化细菌的特征

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摘要

Arsenic (As), a semimetal toxic for humans, is commonly associated with serious health problems. The most common form of massive and chronic exposure to As is through consumption of contaminated drinking water. This study aimed to isolate an As resistant bacterial strain to characterize its ability to oxidize As (III) when immobilized in an activated carbon batch bioreactor and to evaluate its potential to be used in biological treatments to remediate As contaminated waters. The diversity of bacterial communities from sediments of the As-rich Camarones River, Atacama Desert, Chile, was evaluated by Illumina sequencing. Dominant taxonomic groups (>1%) isolated were affiliated with Proteobacteria and Firmicutes. A high As-resistant bacterium was selected (Pseudomonas migulae VC-19 strain) and the presence of aio gene in it was investigated. Arsenite detoxification activity by this bacterial strain was determined by HPLC/HG/AAS. Particularly when immobilized on activated carbon, P. migulae VC-19 showed high rates of As(III) conversion (100% oxidized after 36 h of incubation). To the best of our knowledge, this is the first report of a P. migulae arsenite oxidizing strain that is promising for biotechnological application in the treatment of arsenic contaminated waters.
机译:砷(AS),对人类的半表毒性,通常与严重的健康问题有关。通过污染的饮用水消耗,最常见的巨大和慢性暴露形式。该研究旨在将其作为抗性细菌菌株分离为在活性炭批量生物反应器中固定在活性炭批量生物反应器中并评估其用于生物处理中以修复污染水域的潜力来表征其抗氧化的能力。通过Illumina测序评估了富含富含Camarones河沉积物的细菌社区的多样性,智利Atacama Desert,Atacama Desert,智利。分离的主要分类基团(> 1%)与植物和更加骨折。选择了高度抗性细菌(假单胞菌MIGULAE VC-19菌株),并研究了其中的AIO基因。通过HPLC / HG / AAS测定这种细菌菌株的砷酸盐排毒活性。特别是当固定在活性炭上时,P. migulae VC-19显示出高速率为(III)转化率(100%孵育后100%氧化)。据我们所知,这是P. migulae砷酸盐氧化菌株的第一个报告,这对于生物技术应用在治疗砷污染水域中是有前途的。

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