Fu Jizhen, Song Rui, Li Suzhen, Wang Yuxin, Zhao Ercheng, Li Li
Shanxi Key Laboratory of Integrated Pest Management in Agriculture, College of Plant Protection, Shanxi Agricultural University, Taiyuan 030031, China.
College of Food Science and Engineering, Shanxi Agricultural University, Taiyuan, Shanxi 030031, China.
J Agric Food Chem. 2025 Jul 9;73(27):16778-16786. doi: 10.1021/acs.jafc.5c04802. Epub 2025 Jun 29.
Benzovindiflupyr (BEN) is a novel chiral fungicide that functions as a succinate dehydrogenase inhibitor. However, investigations of the environmental behavior of BEN at the enantiomeric level are limited. This study on the dissipation of BEN in five distinct soil types demonstrated that the dissipation of the 1, 4-BEN and 1, 4-BEN enantiomers in nonsterilized soil followed first-order kinetics, with half-lives ranging from 38.5 to 138.6 days and 38.5 to 231.0 days, respectively. Dissipation was negligible in sterilized soil, indicating that microbial activity is essential to the process. The dissipation of BEN enantiomers was slower in pure water compared to groundwater, Fen River water, and tap water, with half-lives of 115.5 days for both enantiomers. Notably, 1, 4-BEN was preferentially dissipated in four soil types and Fen River water. 1, 4-BEN and 1, 4-BEN in the hydroponic pak choi system, the average root concentration factors were 17.90 and 17.16, while the average translocation factors were 0.041 and 0.078, respectively. Consequently, BEN enantiomers accumulated more in the roots, with 1, 4-BEN exhibiting preferential translocation in leaves. These findings provide insights into the environmental behavior of BEN at the enantiomeric level, which is essential for a comprehensive evaluation of its chiral characteristics.
苯并吲唑氟吡菌酯(BEN)是一种新型手性杀菌剂,具有琥珀酸脱氢酶抑制剂的功能。然而,在对映体水平上对BEN环境行为的研究有限。这项关于BEN在五种不同土壤类型中消散情况的研究表明,在未灭菌土壤中,1,4-BEN及其对映体的消散遵循一级动力学,半衰期分别为38.5至138.6天和38.5至231.0天。在灭菌土壤中消散可忽略不计,这表明微生物活性对该过程至关重要。与地下水、汾河水和自来水相比,BEN对映体在纯水中的消散较慢,两种对映体的半衰期均为115.5天。值得注意的是,1,4-BEN在四种土壤类型和汾河水中优先消散。在水培小白菜系统中,1,4-BEN及其对映体的平均根浓度因子分别为17.90和17.16,而平均转运因子分别为0.041和0.078。因此,BEN对映体在根部积累更多,其中1,4-BEN在叶片中表现出优先转运。这些发现为BEN在对映体水平上的环境行为提供了见解,这对于全面评估其手性特征至关重要。