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在田间条件下,三唑酮在小麦和土壤中立体选择性转化为代谢物三唑醇。

Stereoselective transformation of triadimefon to metabolite triadimenol in wheat and soil under field conditions.

机构信息

Institute of Quality Standards & Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, Key Laboratory of Agrifood Quality and Safety, Ministry of Agriculture, Beijing 100081, China.

出版信息

J Hazard Mater. 2013 Sep 15;260:929-36. doi: 10.1016/j.jhazmat.2013.06.046. Epub 2013 Jun 27.

DOI:10.1016/j.jhazmat.2013.06.046
PMID:23876258
Abstract

Racemic triadimefon (TF) was applied to wheat and soil at three sites (Beijing, Huaibei, and Zhengzhou in China) under open field conditions. Its enantioselective degradation and stereoselective transformation to the major metabolite, triadimenol (TN), in wheat straw, grain and soil were investigated. At all sites, the degradation of TF enantiomers in straw and soil followed first-order kinetics. In soil from Beijing and Zhengzhou R-(-)-TF was preferentially degraded; however, preferential enantioselective degradations were not recorded in soil from Huaibei or in the straw from all sites. There were noticeable differences in the stereoselective formation of TN stereoisomers in all straw and soil samples. TN diastereomer A with high animal toxicity was preferentially produced via a reductive reaction in straw. In contrast, diastereomer B, was preferential in soil across the experimental period. Different TN concentrations were found in the order of SR-(-)-TN>RR-(+)-TN>RS-(+)-TN>SS-(-)-TN in straw, and RR-(+)-TN>SS-(-)-TN>SR-(-)-TN>RS-(+)-TN in soil. Neither TF nor TN was found in wheat grain at harvest. Because of differences in degradation, formation, and toxicity, the characterization of enantiomers and stereoisomers in this study contributes toward comprehensively assessing the fate and risk of chiral agrochemicals in the environment and food.

摘要

外消旋三唑酮(TF)在田间条件下分别于三个地点(中国的北京、淮北和郑州)施用于小麦和土壤。研究了其在小麦秸秆、籽粒和土壤中对主要代谢物三唑醇(TN)的对映选择性降解和立体选择性转化。在所有地点,TF 对映体在秸秆和土壤中的降解均遵循一级动力学。在北京和郑州的土壤中,R-(-)-TF 优先降解;然而,在淮北的土壤或所有地点的秸秆中,均未记录到优先对映选择性降解。所有秸秆和土壤样品中 TN 立体异构体的立体选择性形成存在明显差异。具有高动物毒性的 TN 非对映异构体 A 主要通过秸秆中的还原反应生成。相比之下,在整个实验期间,B 非对映异构体在土壤中优先形成。在秸秆中,TN 的浓度顺序为 SR-(-)-TN>RR-(+)-TN>RS-(+)-TN>SS-(-)-TN,而在土壤中,浓度顺序为 RR-(+)-TN>SS-(-)-TN>SR-(-)-TN>RS-(+)-TN。在收获时,小麦籽粒中均未检测到 TF 或 TN。由于降解、形成和毒性的差异,本研究中对映体和立体异构体的特征描述有助于全面评估手性农药在环境和食品中的命运和风险。

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