Key Laboratory of Pesticide Toxicology and Application Technique, College of Plant Protection, Shandong Agricultural University, Tai'an, China.
Key Laboratory of Pesticide Toxicology and Application Technique, College of Plant Protection, Shandong Agricultural University, Tai'an, China.
Pestic Biochem Physiol. 2021 Feb;172:104768. doi: 10.1016/j.pestbp.2020.104768. Epub 2020 Dec 28.
The melon aphid, Aphis gossypii, is an important pest of vegetables. Insecticide resistance in A. gossypii has increased due to the frequent use of insecticides. We studied the levels and mechanisms of A. gossypii resistance to imidacloprid, acetamiprid and lambda-cyhalothrin here. The resistance levels of the three insecticides in 20 populations of A. gossypii varied. When compared to the susceptible strain (Lab-SS), there were two moderate resistance (MR) populations and nine low resistance (LR) populations to imidacloprid, respectively, two MR populations and two LR populations to acetamiprid, respectively, and, five MR populations and two LR populations to λ-cyhalothrin, respectively. Gene mutation detection in the MR level populations showed arginine to threonine substitution (R81T) in three populations and lysine to glutamine substitution (K264E) in the nicotinic acetylcholine receptor (nAChR) β1 subunit in one population, respectively. No valine to isoleucine substitution (V62I) was found in the nAChR β1 subunit in any of the tested populations. The leucine to phenylalanine substitution (L1014F) in sodium channel α subunit was found in five MR populations. The relative expression of the CYP6CY13 gene was significantly upregulated in the Daiyue and Shenxian populations. The CYP6CY14 gene was significantly upregulated in Daiyue, Dongchangfu, Shenxian, Mengyin and Anqiu populations. The CYP6CY19 gene was significantly upregulated in the Dongchangfu and Mengyin populations. The relative expressions of the esterase E4 or FE4 genes were significantly upregulated in most of the MR populations. These results provide insight into the current insecticide resistance of A. gossypii and may contribute to more effective resistance management strategies.
棉蚜是蔬菜的重要害虫。由于杀虫剂的频繁使用,棉蚜对杀虫剂的抗药性增加。我们在这里研究了棉蚜对吡虫啉、乙酰甲胺磷和高效氯氟氰菊酯的抗性水平和机制。 20 个棉蚜种群对三种杀虫剂的抗性水平存在差异。与敏感品系(Lab-SS)相比,吡虫啉分别有两个中抗(MR)种群和九个低抗(LR)种群,乙酰甲胺磷分别有两个 MR 种群和两个 LR 种群,而高效氯氟氰菊酯分别有五个 MR 种群和两个 LR 种群。在 MR 水平种群中进行基因突变检测发现,三个种群的烟碱型乙酰胆碱受体(nAChR)β1 亚基中的精氨酸突变为苏氨酸(R81T),一个种群中的 nAChR β1 亚基的赖氨酸突变为谷氨酰胺(K264E)。在测试的任何种群中均未发现 nAChR β1 亚基中的缬氨酸突变为异亮氨酸(V62I)。五个 MR 种群中的钠离子通道α亚基发现亮氨酸突变为苯丙氨酸(L1014F)。 CYP6CY13 基因的相对表达在岱岳和莘县种群中显著上调。 CYP6CY14 基因在岱岳、东昌府、莘县、蒙阴和安丘种群中显著上调。 CYP6CY19 基因在东昌府和蒙阴种群中显著上调。酯酶 E4 或 FE4 基因的相对表达在大多数 MR 种群中显著上调。这些结果为棉蚜当前的抗药性提供了新的见解,并可能有助于更有效的抗性管理策略。