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手性有机磷农药福噻嗪:绝对构型、立体选择性生物活性、毒性及在蔬菜中的降解。

Chiral Organophosphorous Pesticide Fosthiazate: Absolute Configuration, Stereoselective Bioactivity, Toxicity, and Degradation in Vegetables.

机构信息

Department of Pesticide Science, College of Plant Protection, Nanjing Agricultural University, State & Local Joint Engineering Research Center of Green Pesticide Invention and Application, Nanjing, Jiangsu 210095, People's Republic of China.

Department of Chemistry, College of Sciences, Nanjing Agricultural University, Nanjing, Jiangsu 210095, People's Republic of China.

出版信息

J Agric Food Chem. 2020 Jul 22;68(29):7609-7616. doi: 10.1021/acs.jafc.0c03008. Epub 2020 Jul 13.

DOI:10.1021/acs.jafc.0c03008
PMID:32598147
Abstract

Fosthiazate is a widely used chiral organophosphorous nematicide with four stereoisomers. The present study systemically assessed the stereoselectivity of fosthiazate for the first time, including absolute configuration confirmation, stereoselective bioactivity toward nematode and aphid, toxicity to honeybees, and stereoselective degradation in cucumber and pepper under field conditions. The absolute configurations of the four stereoisomers that eluted on the Superchiral IG-3 column were confirmed as (1,3)-(-)-fosthiazate, (1,3)-(-)-fosthiazate, (1,3)-(+)-fosthiazate, and (1,3)-(+)-fosthiazate. In comparison to the other two stereoisomers, (1,3)-fosthiazate and (1,3)-fosthiazate possess more than 100 times bioactivity and 10 times toxicity toward the target and non-target organisms, respectively. The molecular docking found that (1,3)-fosthiazate and (1,3)-fosthiazate had shorter binding distances and lower energies with acetylcholinesterase (AChE), which illuminated the mechanism of the experimental results. In addition, both of the high-bioactive stereoisomers had faster degradation rates in cucumber and pepper. On the basis of the results of bioactivity, toxicity, and degradation behavior, the stereoisomer mixture with (1,3)-fosthiazate and (1,3)-fosthiazate will be a better option than racemic fosthiazate to increase the bioactivity and reduce application rates.

摘要

呋线威是一种广泛使用的手性有机磷杀线虫剂,具有四个立体异构体。本研究首次系统评估了呋线威的立体选择性,包括绝对构型确认、对线虫和蚜虫的立体选择性生物活性、对蜜蜂的毒性以及在田间条件下在黄瓜和辣椒中的立体选择性降解。在 Superchiral IG-3 柱上洗脱的四个立体异构体的绝对构型被确认为(1,3)-(-)-呋线威、(1,3)-(-)-呋线威、(1,3)-(+)-呋线威和(1,3)-(+)-呋线威。与另外两种立体异构体相比,(1,3)-呋线威和(1,3)-呋线威对线虫和非靶标生物的生物活性分别超过 100 倍和 10 倍。分子对接发现,(1,3)-呋线威和(1,3)-呋线威与乙酰胆碱酯酶(AChE)的结合距离更短,能量更低,这说明了实验结果的机制。此外,两种高生物活性的立体异构体在黄瓜和辣椒中的降解速度更快。基于生物活性、毒性和降解行为的结果,(1,3)-呋线威和(1,3)-呋线威的立体异构体混合物将是比外消旋呋线威更好的选择,以提高生物活性并降低施用量。

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