An Eric, Zhang Yao, Yao Shuangyan
Dehong Beijing International Chinese School, Beijing 101100, China.
Henan International Laboratory for Green Pest Control/College of Plant Protection, Henan Agricultural University, Zhengzhou 450046, China.
J Agric Food Chem. 2024 Oct 4;72(41):22908-17. doi: 10.1021/acs.jafc.4c06445.
, a polyphagous pest in Asia, infests various crops, causing severe economic losses. Its larvae feed inside plants, making management challenging, with conventional insecticides. This study examines sublethal bifenthrin effects on the reproductive capabilities of adult females. Findings show sublethal bifenthrin concentrations (LC, LC, LC, and LC) significantly reduce sex pheromone production and mating success in a dose-dependent manner. Furthermore, these sublethal exposures influence the expression of pheromone biosynthesis activating neuropeptide and key juvenile hormone signaling genes, including methoprene-tolerant and Krüppel-homologue 1. Enzyme activity assays and metabolite measurements indicated that sublethal bifenthrin exposure decreases trehalose and pyruvic acid levels, suppressing the enzyme activities required for sex pheromone biosynthesis. Additionally, bifenthrin exposure delays ovarian development, reduces ovary size, and decreases egg production and hatchability. These results suggest bifenthrin's potential in attract-and-kill strategies by disrupting essential pathways for pest control, offering insights for improved insecticide use and innovative pest management for .
在亚洲,它是一种多食性害虫,侵害多种作物,造成严重经济损失。其幼虫在植物内部取食,这使得使用传统杀虫剂进行防治具有挑战性。本研究考察了亚致死剂量联苯菊酯对成年雌虫繁殖能力的影响。研究结果表明,亚致死剂量的联苯菊酯浓度(LC、LC、LC和LC)以剂量依赖的方式显著降低性信息素的产生和交配成功率。此外,这些亚致死暴露影响信息素生物合成激活神经肽和关键保幼激素信号基因的表达,包括耐甲氧普烯和Krüppel同源物1。酶活性测定和代谢物测量表明,亚致死剂量的联苯菊酯暴露会降低海藻糖和丙酮酸水平,抑制性信息素生物合成所需的酶活性。此外,联苯菊酯暴露会延迟卵巢发育,减小卵巢大小,并降低产卵量和孵化率。这些结果表明联苯菊酯在通过破坏害虫防治的关键途径来实现诱捕杀灭策略方面具有潜力,为改进杀虫剂使用和创新的害虫管理提供了见解。