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新型手性农用杀菌剂戊吡菌胺在土壤中的立体选择性降解行为。

Stereoselective degradation behavior of the novel chiral antifungal agrochemical penthiopyrad in soil.

机构信息

State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang, 550025, China.

State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang, 550025, China.

出版信息

Environ Res. 2021 Mar;194:110680. doi: 10.1016/j.envres.2020.110680. Epub 2020 Dec 30.

Abstract

Penthiopyrad is a chiral carboxamide fungicide with a broad spectrum of fungicidal activity. However, there is no report on the analysis of the enantiomers of penthiopyrad and their environmental behavior. Soil is an important carrier for pesticides to affect the environment. Therefore, this study aimed to investigate the absolute configuration, stereoselective degradation, configuration stability and potential metabolites of this agrochemical in soil under different laboratory conditions. R-(-)-penthiopyrad and S-(+)-penthiopyrad were identified by the electronic circular dichroism method. Regarding the racemic analyte, the degradation half-lives of the stereoisomers ranged from 38.9 to 97.6 days, the S-(+)-stereoisomer degraded preferentially in four types of Chinese soil. However, enantiopure R-(-)-penthiopyrad degraded faster than its antipode, a finding that might be related to the microbial activity in soil. The organic matter (OM) content influenced the stereoselective degradation of rac-penthiopyrad. No configuration conversion was observed in both enantiopure analyte degradation processes. One possible metabolite, 753-A-OH, was detected in the treated soil samples, and the degradation pathway might be a hydroxylation reaction. This is the first report of the absolute configuration of penthiopyrad stereoisomers and the first comprehensive evaluation of the stereoselective degradation of penthiopyrad in Chinese soil. Stereoselective degradation of rac-penthiopyrad was observed in the four types of soil. And the stereoselectivity might be inhibited by OM. This study provides more accurate data to investigate the environmental behavior of penthiopyrad at the stereoisomer level.

摘要

戊吡丙醚是一种具有广谱杀菌活性的手性羧酰胺类杀菌剂。然而,目前尚无关于戊吡丙醚对映异构体分析及其环境行为的报道。土壤是农药影响环境的重要载体。因此,本研究旨在研究该农药在不同实验室条件下在土壤中的绝对构型、立体选择性降解、构型稳定性和潜在代谢物。采用电子圆二色法鉴定 R-(-)-戊吡丙醚和 S-(+)-戊吡丙醚。对于外消旋分析物,立体异构体的降解半衰期范围为 38.9 至 97.6 天,S-(+)-立体异构体在四种中国土壤中优先降解。然而,对映纯 R-(-)-戊吡丙醚的降解速度快于其对映体,这一发现可能与土壤中的微生物活性有关。有机质(OM)含量影响 rac-戊吡丙醚的立体选择性降解。在两种对映纯分析物的降解过程中均未观察到构型转化。在处理过的土壤样品中检测到一种可能的代谢物 753-A-OH,其降解途径可能是羟化反应。这是戊吡丙醚立体异构体绝对构型的首次报道,也是戊吡丙醚在我国土壤中立体选择性降解的首次综合评价。在四种土壤中观察到 rac-戊吡丙醚的立体选择性降解。并且 OM 可能抑制了立体选择性。本研究为在立体异构体水平上研究戊吡丙醚的环境行为提供了更准确的数据。

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