Department of Entomology, College of Plant Protection, China Agricultural University, Beijing, China.
Sanya Institute of China Agricultural University, Sanya, China.
J Econ Entomol. 2022 Oct 12;115(5):1668-1675. doi: 10.1093/jee/toac112.
The melon aphid, Aphis gossypii Glover, is an important pest on various vegetables around the world and has developed resistance to neonicotinoids in fields. Cycloxaprid is a novel cis-nitromethylene configuration neonicotinoid insecticide that is different from trans-configuration neonicotinoids like imidacloprid and thiamethoxam. Herein, the cross-resistance to the other seven insecticides and fitness costs were investigated in the cycloxaprid-resistant A. gossypii strain (Cpd-R), which has developed 69.5-fold resistance to cycloxaprid. The results showed that the Cpd-R strain had very low levels of cross-resistance to imidacloprid (4.3-fold), acetamiprid (2.9-fold), thiamethoxam (3.7-fold), nitenpyram (6.1-fold), flupyradifurone (2.2-fold), and sulfoxaflor (4.5-fold), while it exhibited a cross-resistance to dinotefuran (10.6-fold). The fitness of the Cpd-R strain by life table analysis was only 0.799 compared to the susceptible strain (Cpd-S). This Cpd-R strain exhibited significantly reduction in fecundity, oviposition days, and developmental time of nymph stage compared to the Cpd-S strain. Moreover, the expression levels of some genes related to the development and reproduction, including EcR, USP, JHAMT, and JHEH were significantly up-regulated, while Vg was down-regulated in the Cpd-R strain. This study indicates that the Cpd-R strain possessed a certain fitness cost. The above research results are useful for rational application of cycloxaprid and implementing the appropriate resistance management strategy for A. gossypii.
蜜瓜果蚜,Aphis gossypii Glover,是世界各地各种蔬菜的重要害虫,并且在田间已对新烟碱类杀虫剂产生了抗性。环丙烯是一种新型的顺式-亚硝甲基烯硝胺类杀虫剂,与吡虫啉和噻虫嗪等反式-构型新烟碱类杀虫剂不同。在此,研究了已对环丙烯产生 69.5 倍抗性的环丙烯抗药性 A. gossypii 品系(Cpd-R)对其他七种杀虫剂的交叉抗性和适合度代价。结果表明,Cpd-R 菌株对吡虫啉(4.3 倍)、乙酰甲胺磷(2.9 倍)、噻虫嗪(3.7 倍)、噻虫胺(6.1 倍)、氟吡呋喃酮(2.2 倍)和噻虫啉(4.5 倍)的交叉抗性水平很低,而对丁硫克百威(10.6 倍)则表现出交叉抗性。与敏感品系(Cpd-S)相比,Cpd-R 菌株的生活表分析的适合度仅为 0.799。与 Cpd-S 菌株相比,Cpd-R 菌株的繁殖力、产卵天数和若虫期发育时间显著降低。此外,Cpd-R 菌株中与发育和繁殖相关的一些基因,包括 EcR、USP、JHAMT 和 JHEH 的表达水平显著上调,而 Vg 的表达水平下调。本研究表明,Cpd-R 菌株具有一定的适合度代价。上述研究结果有助于合理应用环丙烯和实施 A. gossypii 的适当抗性管理策略。