de Little Siobhan C, Umina Paul A
Cesar, 293 Royal Parade, Parkville, Victoria 3052, Australia.
School of BioSciences, Bio21 Institute, The University of Melbourne, Parkville, Victoria 3010, Australia.
J Econ Entomol. 2017 Aug 1;110(4):1764-1769. doi: 10.1093/jee/tox132.
The green peach aphid, Myzus persicae (Sulzer), is a significant agricultural pest that has developed resistance to a large number of insecticides globally. Within Australia, resistance has previously been confirmed for multiple chemical groups, including pyrethroids, carbamates, organophosphates, and neonicotinoids. In this study, we use leaf-dip and topical bioassays to investigate susceptibility and potential cross-resistance of 12 field-collected populations of Australian M. persicae to three recently registered insecticides: sulfoxaflor, spirotetramat, and cyantraniliprole. Despite all 12 populations carrying known resistance mechanisms to carbamates, organophosphates, and pyrethroids, and two populations also exhibiting low-level metabolic resistance to neonicotinoids, we found little evidence of variation in susceptibility to sulfoxafor, spirotetramat, or cyantraniliprole. This provides further evidence that cross-resistance to spirotetramat, cyantraniliprole, and sulfoxaflor in M. persicae is not conferred by the commonly occurring resistance mechanisms MACE, super-kdr, amplification of the E4 esterase gene, or enhanced expression and copy number of the P450 gene, CYP6CY3. Importantly, this study also established toxicity baseline data that will be important for future monitoring of insecticide responses of M. persicae from both broadacre and horticultural crops.
桃蚜(Myzus persicae (Sulzer))是一种重要的农业害虫,已在全球范围内对大量杀虫剂产生了抗性。在澳大利亚,此前已证实对多种化学类别产生了抗性,包括拟除虫菊酯类、氨基甲酸酯类、有机磷类和新烟碱类。在本研究中,我们使用浸叶法和点滴法生物测定来调查12个澳大利亚桃蚜田间种群对三种最近登记的杀虫剂:氟啶虫胺腈、螺虫乙酯和氰虫酰胺的敏感性及潜在的交叉抗性。尽管所有12个种群都携带已知的对氨基甲酸酯类、有机磷类和拟除虫菊酯类的抗性机制,且有两个种群对新烟碱类也表现出低水平的代谢抗性,但我们几乎没有发现对氟啶虫胺腈、螺虫乙酯或氰虫酰胺的敏感性存在差异的证据。这进一步证明,桃蚜对螺虫乙酯、氰虫酰胺和氟啶虫胺腈的交叉抗性并非由常见的抗性机制多功能氧化酶(MACE)、超级抗性击倒抗性(super-kdr)、E4酯酶基因扩增或P450基因CYP6CY3的表达增强和拷贝数增加所导致。重要的是,本研究还建立了毒性基线数据,这对于未来监测大田作物和园艺作物上桃蚜对杀虫剂的反应将具有重要意义。