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草甘膦的微生物降解及抗性机制研究进展

Insights into the microbial degradation and resistance mechanisms of glyphosate.

作者信息

Chen Yongsheng, Chen Wen-Juan, Huang Yaohua, Li Jiayi, Zhong Jianfeng, Zhang Wenping, Zou Yi, Mishra Sandhya, Bhatt Pankaj, Chen Shaohua

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangdong Province Key Laboratory of Microbial Signals and Disease Control, Integrative Microbiology Research Centre, South China Agricultural University, Guangzhou, 510642, China; Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, 510642, China.

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangdong Province Key Laboratory of Microbial Signals and Disease Control, Integrative Microbiology Research Centre, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Environ Res. 2022 Dec;215(Pt 1):114153. doi: 10.1016/j.envres.2022.114153. Epub 2022 Aug 29.

Abstract

Glyphosate, as one of the broad-spectrum herbicides for controlling annual and perennial weeds, is widely distributed in various environments and seriously threatens the safety of human beings and ecology. Glyphosate is currently degraded by abiotic and biotic methods, such as adsorption, photolysis, ozone oxidation, and microbial degradation. Of these, microbial degradation has become the most promising method to treat glyphosate because of its high efficiency and environmental protection. Microorganisms are capable of using glyphosate as a phosphorus, nitrogen, or carbon source and subsequently degrade glyphosate into harmless products by cleaving C-N and C-P bonds, in which enzymes and functional genes related to glyphosate degradation play an indispensable role. There have been many studies on the abiotic and biotic treatment technologies, microbial degradation pathways and intermediate products of glyphosate, but the related enzymes and functional genes involved in the glyphosate degradation pathways have not been further discussed. There is little information on the resistance mechanisms of bacteria and fungi to glyphosate, and previous investigations of resistance mechanisms have mainly focused on how bacteria resist glyphosate damage. Therefore, this review explores the microorganisms, enzymes and functional genes related to the microbial degradation of glyphosate and discusses the pathways of microbial degradation and the resistance mechanisms of microorganisms to glyphosate. This review is expected to provide reference for the application and improvement of the microbial degradation of glyphosate in microbial remediation.

摘要

草甘膦作为一种用于防治一年生和多年生杂草的广谱除草剂,广泛分布于各种环境中,严重威胁着人类和生态安全。目前,草甘膦可通过吸附、光解、臭氧氧化和微生物降解等非生物和生物方法进行降解。其中,微生物降解因其高效性和环保性而成为处理草甘膦最具前景的方法。微生物能够利用草甘膦作为磷、氮或碳源,随后通过裂解碳氮键和碳磷键将草甘膦降解为无害产物,其中与草甘膦降解相关的酶和功能基因起着不可或缺的作用。关于草甘膦的非生物和生物处理技术、微生物降解途径及中间产物已有许多研究,但尚未对草甘膦降解途径中涉及的相关酶和功能基因进行深入探讨。关于细菌和真菌对草甘膦的抗性机制的信息较少,且以往对抗性机制的研究主要集中在细菌如何抵抗草甘膦的损害。因此,本综述探讨了与草甘膦微生物降解相关的微生物、酶和功能基因,并讨论了微生物降解途径以及微生物对草甘膦的抗性机制。本综述有望为草甘膦微生物降解在微生物修复中的应用和改进提供参考。

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