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首页> 外文期刊>FEMS Microbiology Ecology >Reductive tetrachloroethene dehalogenation in the presence of oxygen by Sulfurospirillum multivorans: physiological studies and proteome analysis
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Reductive tetrachloroethene dehalogenation in the presence of oxygen by Sulfurospirillum multivorans: physiological studies and proteome analysis

机译:Culfurospirillum Multivorans在氧气存在下还原四氯乙烯脱卤:生理学研究和蛋白质组分析

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摘要

Reductive dehalogenation of organohalides is carried out by organohalide-respiring bacteria (OHRB) in anoxic environments. The tetrachloroethene (PCE)-respiring Epsilonproteobacterium Sulfurospirillum multivorans is one of few OHRB able to respire oxygen. Therefore, we investigated the organism's capacity to dehalogenate PCE in the presence of oxygen, which would broaden the applicability to use S. multivorans, unlike other commonly oxygen-sensitive OHRB, for bioremediation, e.g. at oxic/anoxic interphases. Additionally, this has an impact on our understanding of the global halogen cycle. Sulfurospirillum multivorans performs dehalogenation of PCE to cis-1,2-dichloroethene at oxygen concentrations below 0.19 mg/L. The redox potential of the medium electrochemically adjusted up to +400 mV had no influence on reductive dehalogenation by S. multivorans in our experiments, suggesting that higher levels of oxygen impair PCE dechlorination by inhibiting or inactivating involved enzymes. The PCE reductive dehalogenase remained active in cell extracts of S. multivorans exposed to 0.37 mg/L oxygen for more than 96 h. Analysis of the proteome revealed that superoxide reductase and cytochrome peroxidase amounts increased with 5% oxygen in the gas phase, while the response to atmospheric oxygen concentrations involved catalase and hydrogen peroxide reductase. Taken together, our results demonstrate that reductive dehalogenation by OHRB is not limited to anoxic conditions.
机译:通过缺氧环境中的有机卤化物 - 呼吸细菌(OHRB)进行有机卤化物的还原脱卤。四氯乙烯(PCE) - 氯醌普通杀菌嘧菌多转移率是能够呼吸氧的几种OHRB之一。因此,我们研究了生物体在氧气存在下脱卤化PCE的能力,这将拓宽使用S. MultivorAns的适用性,与其他通常氧敏感的OHRB不同,例如,用于生物化,例如,其它常见的OHRB。在氧化/缺氧间差异。此外,这对我们对全球卤素周期的理解有影响。硫括号的多转酰剂在0.19mg / L的氧浓度下对CIS-1,2-二氯乙烯进行PCE的脱卤。电化学调节高达+ 400mV的介质的氧化还原潜力对我们的实验中的多转韦人没有影响了多转向者的还原脱卤,这表明通过抑制或灭活所涉及的酶,较高水平的氧气剥落。 PCE还原脱氢酶在S的细胞提取物中仍然活跃于0.37mg / L氧的Murovorans的细胞提取物超过96小时。蛋白质组的分析显示,超氧化物还原酶和细胞色素过氧化物酶量随气相中的5%氧而增加,而对大气氧浓度的反应涉及过氧化氢酶和过氧化氢还原酶。我们的结果一起表明,OHRB的还原脱离不限于缺氧条件。

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