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Exogenous Zn~(2+) enhance the biodegradation of atrazine by regulating the chlorohydrolase gene trzN transcription and membrane permeability of the degrader Arthrobacter sp. DNS10

机译:外源Zn〜(2+)通过调节降解节肢杆菌Sp.N的氯水解酶基因trzN转录和膜通透性增强阿特拉津的生物降解。

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Enhancing the biodegradation efficiency of atrazine, a kind of commonly applied herbicide, has been attracted much more concern. Here, Zn2+ which has long been considered essential in adjusting cell physiological status was selected to investigate its role on the biodegradation of atrazine by Arthrobacter sp. DNS10 as well as the transmembrane transport of atrazine during the biodegradation period. The results of gas chromatography showed that the atrazine removal percentages (initial concentration was 100 mg L-1) in 0.05 mM Zn2+ and 1.0 mM Zn2+ treatments were 94.42% and 86.02% respectively at 48 h, while there was also 66.43% of atrazine left in the treatment without exogenous Zn2+ existence. The expression of atrazine chlorohydrolase gene trzN in the strain DNS10 cultured with 0.05 mM and 1.0 mM Zn2+ was 7.30- and 4.67- times respectively compared with that of the non-zinc treatment. In addition, the flow cytometry test suggests that 0.05 mM of Zn2+ could better adjust the membrane permeability of strain DNS10, meanwhile, the amount of atrazine accumulation in the strain DNS10 co-cultured with this level Zn2+ was 2.21 times of that of the strain without Zn2+. This study may facilitate a better understanding of the mechanisms that exogenous Zn2+ enhances the biodegradation of atrazine by Arthrobacter sp. DNS10. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提高阿特拉津(一种常见的除草剂)的生物降解效率已引起更多关注。在这里,选择了长期以来一直被认为在调节细胞生理状态中必不可少的Zn2 +,以研究其对节杆菌属细菌对at去津生物降解的作用。生物降解期间的DNS10以及of去津的跨膜运输。气相色谱分析结果表明,在48 h时,0.05 mM Zn2 +和1.0 mM Zn2 +处理中阿特拉津的去除率(初始浓度为100 mg L-1)分别为94.42%和86.02%,同时还剩下66.43%的阿特拉津在没有外源Zn2 +存在的治疗中。与非锌处理相比,在0.05 mM和1.0 mM Zn2 +培养的DNS10菌株中,r去津氯水解酶基因trzN的表达分别为7.30-和4.67-倍。此外,流式细胞仪测试表明,0.05 mM的Zn2 +可以更好地调节DNS10菌株的膜通透性,与此同时,与该水平的Zn2 +共培养的DNS10菌株中at去津的蓄积量是不携带该菌株的菌株的2.21倍Zn2 +。这项研究可能有助于更好地了解外源性Zn2 +增强节杆菌属细菌对阿特拉津的生物降解的机理。 DNS10。 (C)2019 Elsevier Ltd.保留所有权利。

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