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首页> 外文期刊>International journal of hydrogen energy >Microbial oxidation of antimonite and arsenite by bacteria isolated from antimony-contaminated soils
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Microbial oxidation of antimonite and arsenite by bacteria isolated from antimony-contaminated soils

机译:从锑污染土壤中分离出来的细菌对锑矿和亚砷酸盐的微生物氧化

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摘要

Two Sb(III)-oxidizing bacteria were isolated from Sb(III)-contaminated soil. By analyzing the 16S rRNA gene, two isolated strains were designated Shinella sp. NLS1 and Ensifer sp. NLS4. Both strains could oxidize Sb(III) to produce Sb(V) under nutrient-limited conditions. Kinetic studies indicated the NLS1 Sb(III) oxidation rate (V-max = 0.28 mu M min(-1), K-m = 279.13 mu M) was comparable to that of NLS4 (V-max = 0.32 mu M min(-1), Km = 248.43 mu M). NLS1 could also perform aerobic As(III) oxidation and simultaneous oxidation of Sb(III) and As(III). NLS4 was able to perform Sb(III) oxidation under anaerobic conditions with nitrate as an electron acceptor. NLS1 possesses the aioA gene, which might function as both arsenite and antimonite oxidase, whereas strain NLS4 does not. This implies that Sb(III) oxidation in strains NLS1 and NLS4 occurred through two different pathways. This study demonstrates the potential of both isolates for bioremediation of Sb-contaminated sites. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:从受Sb(III)污染的土壤中分离出两种Sb(III)氧化细菌。通过分析16S rRNA基因,将两个分离的菌株命名为Shinella sp。 NLS1和Ensifer sp。 NLS4。两种菌株都可以在营养受限的条件下将Sb(III)氧化生成Sb(V)。动力学研究表明NLS1 Sb(III)的氧化速率(V-max = 0.28μMmin(-1),Km = 279.13μM)与NLS4(V-max = 0.32μMmin(-1))相当,Km =248.43μM)。 NLS1还可以进行好氧的As(III)氧化,同时氧化Sb(III)和As(III)。 NLS4能够在厌氧条件下以硝酸盐为电子受体进行Sb(III)氧化。 NLS1拥有aioA基因,该基因可能同时充当亚砷酸盐和锑酸氧化酶,而菌株NLS4没有。这意味着菌株NLS1和NLS4中的Sb(III)氧化通过两种不同的途径发生。这项研究证明了两种分离物对Sb污染位点进行生物修复的潜力。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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