Fan Yinjun, Zhang Changzhen, Qin Yu, Yin Xinhui, Dong Xinyi, Desneux Nicolas, Zhou Hongxu
Shandong Engineering Research Center for Environment-Friendly Agricultural Pest Management, China-Australia Cooperative Research Center for Crop Health and Biological Invasions, College of Plant Health & Medicine, Qingdao Agricultural University, Qingdao 266109, China.
Université Côte d'Azur, INRAE, CNRS, UMR ISA, 06000 Nice, France.
Insects. 2022 Nov 1;13(11):1004. doi: 10.3390/insects13111004.
is a notorious polyphagous pest in China, and its management strategies largely depend on methyl eugenol (ME), which has been widely used as an attractant to monitor and eradicate populations for seven decades. However, the non-responsiveness levels in field populations to ME is unknown. In this study, we monitored the response to ME in field populations from the four most heavily infested provinces in China, and the results showed that the populations had lower sensitivity to ME relative to GZS susceptible strain. The percent responsiveness of the lowest sensitivity population was 5.88-, 3.47-, and 1.47-fold lower relative to the susceptible strain at doses of 1, 10, and 100 µL of ME, respectively. Gene expression analysis and inhibitor assays further revealed that odorant binding protein (BdorOBP2, BdorOBP83b) and the P450 enzyme system may be associated with the lower response to ME. To our knowledge, this work is the first to report that the P450 enzyme system confers a lower responsiveness to lure insects. These findings provided valuable insights for exploiting ME non-responsiveness to protect sterile males from ME-based control strategies and the use of lures combined with insecticides.
在中国,它是一种臭名昭著的多食性害虫,其管理策略很大程度上依赖于甲基丁香酚(ME),在长达七十年的时间里,甲基丁香酚一直被广泛用作引诱剂来监测和根除害虫种群。然而,田间种群对甲基丁香酚的无反应水平尚不清楚。在本研究中,我们监测了来自中国四个虫害最严重省份的田间种群对甲基丁香酚的反应,结果表明,相对于GZS敏感品系,这些种群对甲基丁香酚的敏感性较低。在1、10和100微升甲基丁香酚剂量下,敏感性最低的种群的反应百分比分别比敏感品系低5.88倍、3.47倍和1.47倍。基因表达分析和抑制剂试验进一步表明,气味结合蛋白(BdorOBP2、BdorOBP83b)和P450酶系统可能与对甲基丁香酚的较低反应有关。据我们所知,这项工作首次报道了P450酶系统使昆虫对诱捕剂的反应性降低。这些发现为利用对甲基丁香酚无反应性来保护不育雄性免受基于甲基丁香酚的控制策略影响以及使用诱捕剂与杀虫剂结合提供了有价值的见解。