College of Plant Protection & Institute of Applied Entomology, Yangzhou University, Yangzhou 225000, China.
Plant Protection and Quarantine Station of Nanjing City, Nanjing 210029, Jiangsu Province, China.
Pestic Biochem Physiol. 2024 Aug;203:106012. doi: 10.1016/j.pestbp.2024.106012. Epub 2024 Jul 3.
Liriomyza trifolii, an invasive pest, poses a substantial threat to horticultural and vegetable plants. It spreads rapidly, especially in hot weather, leading to large-scale outbreaks with strong thermotolerance and insecticide resistance. In this study, mortality and LtCYP4g1 expression in L. trifolii were evaluated after thermal and insecticides exposure. Furthermore, functional verification of LtCYP4g1 was conducted through RNA interference and bacterial survival assays in Escherichia coli containing recombinant LtCYP4g1 protein. Results indicated that a short time exposure to high temperature incresed insecticide tolerance of L. trifolii, attributed to decreased mortality and induced LtCYP4g1 expression; LtCYP4g1 was involved in stimulating synthesis of cuticular hydrocarbons (CHCs) and elevating epicuticle lipid content and thickness, and E. coli cells overexpressing LtCYP4g1 exhibited significant tolerance to thermal and insecticide stress. In general, P450-mediated tolerance of L. trifolii was enhanced by high temperature, with LtCYP4g1 playing a role in promoting biosynthesis of CHCs for thickening epidermal lipid barrier and reducing cuticular penetration. This study provides a framework for delving into the function of CYP450s in insecticide detoxification and illustrates the role of global warming in driving the evolution of L. trifolii.
南美斑潜蝇,一种入侵害虫,对园艺和蔬菜植物构成了重大威胁。它传播迅速,特别是在炎热的天气下,具有很强的耐热性和抗药性,导致大规模爆发。本研究评估了热和杀虫剂暴露后南美斑潜蝇的死亡率和 LtCYP4g1 表达。此外,通过 RNA 干扰和含有重组 LtCYP4g1 蛋白的大肠杆菌中的细菌存活试验对 LtCYP4g1 进行了功能验证。结果表明,短时间暴露于高温会增加南美斑潜蝇对杀虫剂的耐受性,这归因于死亡率降低和 LtCYP4g1 表达的诱导;LtCYP4g1 参与刺激表皮碳氢化合物 (CHCs) 的合成,并提高表皮脂质含量和厚度,过表达 LtCYP4g1 的大肠杆菌细胞对热和杀虫剂胁迫表现出显著的耐受性。总的来说,高温增强了 L. trifolii 中 P450 介导的耐受性,LtCYP4g1 参与促进 CHCs 的生物合成,以加厚表皮脂质屏障并减少角质层穿透。本研究为深入研究 CYP450 在杀虫剂解毒中的作用提供了框架,并说明了全球变暖在推动 L. trifolii 进化中的作用。