Department of Entomology and MOA Key Laboratory for Monitoring and Environment-Friendly Control of Crop Pests, College of Plant Protection, China Agricultural University, Beijing 100193, China.
Innovation Center of Pesticide Research, Department of Applied Chemistry, College of Science, China Agricultural University, Beijing 100193, China.
J Agric Food Chem. 2024 Aug 7;72(31):17317-17327. doi: 10.1021/acs.jafc.4c04326. Epub 2024 Jul 27.
With high aphid-repellent activity but low stability, ()-β-farnesene (EβF), the major component of the aphid alarm pheromone, can be used as a synergist to insecticides. Some EβF analogues possess both good aphid-repellent activity and stability, but the synergistic effect and related mechanism are still unclear. Therefore, this study investigated the synergistic effect and underlying mechanism of the EβF and its analogue against the aphid . The results indicated that EβF and the analogue showed significantly synergistic effects to different insecticides, with synergism ratios from 1.524 to 3.446. Mechanistic studies revealed that EβF and the analogue exhibited effective repellent activity, significantly upregulated target OBP genes by 161 to 731%, increased aphid mobility, and thereby enhanced contact with insecticides. This research suggests that the EβF analogue represents a novel synergist for insecticides, with the potential for further application in aphid control owing to its enhanced bioactivity and the possibility of reducing insecticide doses.
(EβF) -β- 法呢烯具有较高的驱避活性但稳定性较低,是蚜虫报警信息素的主要成分,可用作杀虫剂的增效剂。一些 EβF 类似物具有良好的驱避活性和稳定性,但增效作用及其相关机制仍不清楚。因此,本研究调查了 EβF 及其类似物对蚜虫的增效作用及其潜在机制。结果表明,EβF 和类似物对不同杀虫剂表现出显著的增效作用,增效比为 1.524 至 3.446。机制研究表明,EβF 和类似物具有有效的驱避活性,显著上调靶标 OBP 基因 161%至 731%,增加了蚜虫的活动性,从而增加了与杀虫剂的接触。这项研究表明,EβF 类似物是一种新型的杀虫剂增效剂,由于其增强的生物活性和减少杀虫剂剂量的可能性,有望进一步应用于蚜虫防治。