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枯草芽孢杆菌 Za 对二苯醚类除草剂解草酯的解毒作用及酯酶基因 lacE 的对映选择性特征。

Detoxification of diphenyl ether herbicide lactofen by Bacillus sp. Za and enantioselective characteristics of an esterase gene lacE.

机构信息

Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China; Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, China.

Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

J Hazard Mater. 2018 Jan 5;341:336-345. doi: 10.1016/j.jhazmat.2017.07.064. Epub 2017 Aug 3.

Abstract

A bacterial strain Za capable of degrading diphenyl ether herbicide lactofen was isolated and identified as Bacillus sp. This strain could degrade 94.8% of 50mgL lactofen after 4days of inoculation in flasks. It was revealed that lactofen was initially hydrolyzed to desethyl lactofen, which was further transformed to acifluorfen, followed by the reduction of the nitro group to yield aminoacifluorfen. The phytotoxicity of the transformed product aminoacifluorfen to maize was decreased significantly compared with the lactofen. A gene lacE, encoding an esterase responsible for lactofen hydrolysis to desethyl lactofen and acifluorfen continuously, was cloned from Bacillus sp. Za. The deduced amino acid belonging to the esterase family VII contained a typical Ser-His-Asp/Glu catalytic triad and the conserved motifs GXSXG. The purified recombinant protein LacE displayed maximal esterase activity at 40°C and pH 7.0. Additionally, LacE had broad substrate specificity and was capable of hydrolyzing p-nitrophenyl esters. The enantioselectivity of LacE during lactofen degradation was further studied, and the results indicated that the (S)-(+)-lactofen was degraded faster than the (R)-(-)-lactofen, which could illustrate the reported phenomenon that (S)-(+)-lactofen was preferentially degraded in soil and sediment.

摘要

一株能够降解联苯醚类除草剂乳氟禾草灵的细菌菌株 Za 被分离并鉴定为芽孢杆菌属。该菌株在摇瓶中接种 4 天后,可降解 50mg/L 乳氟禾草灵的 94.8%。研究表明,乳氟禾草灵首先被水解为去乙基乳氟禾草灵,然后进一步转化为三氟羧草醚,接着硝基被还原为氨基三氟羧草醚。与乳氟禾草灵相比,转化产物氨基三氟羧草醚对玉米的毒性明显降低。从芽孢杆菌属 Za 中克隆出一个编码酯酶的基因 lacE,该酶负责将乳氟禾草灵水解为去乙基乳氟禾草灵和三氟羧草醚。该推导的氨基酸属于酯酶家族 VII,包含一个典型的 Ser-His-Asp/Glu 催化三联体和保守基序 GXSXG。纯化的重组蛋白 LacE 在 40°C 和 pH7.0 时表现出最大的酯酶活性。此外,LacE 具有广泛的底物特异性,能够水解对硝基苯酯。进一步研究了 LacE 在乳氟禾草灵降解过程中的对映选择性,结果表明 (S)-(+)-乳氟禾草灵的降解速度快于 (R)-(-)-乳氟禾草灵,这可以解释在土壤和沉积物中优先降解 (S)-(+)-乳氟禾草灵的报道现象。

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