首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Se(VI) Reduction and the Precipitation of Se(0) by the Facultative Bacterium Enterobacter cloacae SLD1a-1 Are Regulated by FNR
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Se(VI) Reduction and the Precipitation of Se(0) by the Facultative Bacterium Enterobacter cloacae SLD1a-1 Are Regulated by FNR

机译:FNR调节阴沟肠杆菌兼性细菌SLD1a-1对Se(VI)的还原和Se(0)的沉淀

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摘要

The fate of selenium in the environment is controlled, in part, by microbial selenium oxyanion reduction and Se(0) precipitation. In this study, we identified a genetic regulator that controls selenate reductase activity in the Se-reducing bacterium Enterobacter cloacae SLD1a-1. Heterologous expression of the global anaerobic regulatory gene fnr (fumarate nitrate reduction regulator) from E. cloacae in the non-Se-reducing strain Escherichia coli S17-1 activated the ability to reduce Se(VI) and precipitate insoluble Se(0) particles. Se(VI) reduction by E. coli S17-1 containing the fnr gene occurred at rates similar to those for E. cloacae, with first-order reaction constants of k = 2.07 × 10−2 h−1 and k = 3.36 × 10−2 h−1, respectively, and produced elemental selenium particles with identical morphologies and short-range atomic orders. Mutation of the fnr gene in E. cloacae SLD1a-1 resulted in derivative strains that were deficient in selenate reductase activity and unable to precipitate elemental selenium. Complementation by the wild-type fnr sequence restored the ability of mutant strains to reduce Se(VI). Our findings suggest that Se(VI) reduction and the precipitation of Se(0) by facultative anaerobes are regulated by oxygen-sensing transcription factors and occur under suboxic conditions.
机译:环境中硒的命运部分受微生物硒氧阴离子的还原和Se(0)沉淀的控制。在这项研究中,我们确定了一种遗传调节剂,该调节剂可控制硒还原菌阴沟肠杆菌SLD1a-1中的硒酸还原酶活性。在非Se还原菌株大肠杆菌S17-1中,阴沟肠杆菌的全球厌氧调节基因fnr(富马酸盐硝酸盐还原调节剂)的异源表达激活了还原Se(VI)和沉淀不溶性Se(0)颗粒的能力。含有fnr基因的大肠杆菌S17-1还原Se(VI)的速率与阴沟肠杆菌相似,一级反应常数为k = 2.07×10 -2 h < sup> -1 和k = 3.36×10 −2 h −1 ,生成的元素硒粒子具有相同的形态和短程原子序。阴沟肠杆菌SLD1a-1中fnr基因的突变导致衍生菌株缺乏硒酸还原酶活性,并且无法沉淀出硒元素。野生型fnr序列的补充恢复了突变株还原Se(VI)的能力。我们的发现表明,兼性厌氧菌对Se(VI)的还原和Se(0)的沉淀受氧敏感的转录因子调节,并发生在低氧条件下。

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