State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, P. R. China.
J Agric Food Chem. 2023 Aug 16;71(32):12167-12176. doi: 10.1021/acs.jafc.3c02899. Epub 2023 Aug 8.
Understanding the mechanism of long-lasting control efficacy of pesticides is important for developing sustainable high-efficacy pesticides, decreasing pesticide-use frequency and environmental input. This study investigates the long-term control mechanism of imidacloprid against wheat aphids under seed treatment. The concentrations of imidacloprid and its metabolites were 2.2-69.6 times lower than their individual LC after 238 days of treatment, and the control efficacy was still higher than 94.6%. The mixed bioactivity tests demonstrated that the insecticidal activity of the mixture of imidacloprid and its bioactive metabolites was approximately 1.5-189.7 times greater than that of a single compound against wheat aphids. The concentrations of imidacloprid, 5-hydroxy imidacloprid, and imidacloprid olefin in top flag leaves were 0.022, 0.084, and 0.034 mg/kg, respectively, during the aphid flourishing period, which were higher than the LC of the mixture (0.011 mg/kg), therefore providing long-lasting control efficacy. The study provides a first insight into the synergistic effects between a pesticide and its bioactive metabolites in ensuring long-term control performance.
了解杀虫剂长效控制效果的机制对于开发可持续的高效杀虫剂、降低农药使用频率和减少环境投入非常重要。本研究调查了种子处理中吡虫啉对小麦蚜虫的长期控制机制。处理 238 天后,吡虫啉及其代谢物的浓度比其各自 LC 低 2.2-69.6 倍,但防治效果仍高于 94.6%。混合生物活性测试表明,吡虫啉及其生物活性代谢物混合物对小麦蚜虫的杀虫活性约为单一化合物的 1.5-189.7 倍。在蚜虫盛发期,顶叶中吡虫啉、5-羟基吡虫啉和吡虫啉烯烃的浓度分别为 0.022、0.084 和 0.034mg/kg,均高于混合物 LC(0.011mg/kg),从而提供了长效控制效果。该研究首次深入了解了杀虫剂与其生物活性代谢物之间的协同作用,以确保长期控制性能。