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旧农药,新用途:高效氯氰菊酯对蝗虫防治的智能与安全对映体。

Old pesticide, new use: Smart and safe enantiomer of isocarbophos in locust control.

机构信息

Key Laboratory of Microbial Technology for Industrial Pollution Control of Zhejiang Province, College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.

Interdisciplinary Research Academy, Zhejiang Shuren University, Hangzhou 310015, China.

出版信息

Ecotoxicol Environ Saf. 2021 Dec 1;225:112710. doi: 10.1016/j.ecoenv.2021.112710. Epub 2021 Sep 1.

DOI:10.1016/j.ecoenv.2021.112710
PMID:34481357
Abstract

Locust plagues are still worldwide problems. Selecting active enantiomers from current chiral insecticides is necessary for controlling locusts and mitigating the pesticide pollution in agricultural lands. Herein, two enantiomers of isocarbophos (ICP) were separated and the enantioselectivity in insecticidal activity against the pest Locusta migratoria manilensis (L. migratoria) and mechanisms were investigated. The significant difference of LD between (+)-ICP (0.609 mg/kg bw) and (-)-ICP (79.412 mg/kg bw) demonstrated that (+)-ICP was a more effective enantiomer. The enantioselectivity in insecticidal activity of ICP enantiomers could be attributed to the selective affinity to acetylcholinesterase (AChE). Results of in vivo and in vitro assays suggested that AChE was more sensitive to (+)-ICP. In addition, molecular docking showed that the -CDOKER energies of (+)-ICP and (-)-ICP were 25.6652 and 24.4169, respectively, which suggested a stronger affinity between (+)-ICP and AChE. Significant selectivity also occurred in detoxifying enzymes activities (carboxylesterases (CarEs) and glutathione S-transferases (GSTs)) and related gene expressions. Suppression of detoxifying enzymes activities with (+)-ICP treatment suggested that (-)-ICP may induce the detoxifying enzyme-mediated ICP resistance. A more comprehensive understanding of the enantioselectivity of ICP is necessary for improving regulation and risk assessment of ICP.

摘要

蝗虫灾害仍是全球性问题。从现有的手性杀虫剂中选择活性对映异构体,对于控制蝗虫和减轻农业用地中农药污染是必要的。本研究中,对异丙磷(ICP)的两种对映异构体进行了分离,并研究了其对害虫东亚飞蝗(L. migratoria)的杀虫活性的手性选择性和作用机制。(+)-ICP(0.609mg/kg bw)和(-)-ICP(79.412mg/kg bw)之间 LD 的显著差异表明(+)-ICP 是一种更有效的对映异构体。ICP 对映异构体杀虫活性的手性选择性可归因于对乙酰胆碱酯酶(AChE)的选择性亲和力。体内和体外测定结果表明,AChE 对(+)-ICP 更敏感。此外,分子对接表明(+)-ICP 和(-)-ICP 的-CDOker 能量分别为 25.6652 和 24.4169,这表明(+)-ICP 与 AChE 之间具有更强的亲和力。解毒酶活性(羧酸酯酶(CarEs)和谷胱甘肽 S-转移酶(GSTs))和相关基因表达也存在显著的选择性。(+)-ICP 处理对解毒酶活性的抑制表明,(-)-ICP 可能诱导解毒酶介导的 ICP 抗性。为了提高 ICP 的监管和风险评估,有必要更全面地了解 ICP 的对映体选择性。

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