Sun Ranran, Jiang Liwei, Chen Wenlong, Xu Yuanhao, Yi Xin, Zhong Guohua
Key Laboratory of Crop Integrated Pest Management in South China, Ministry of Agriculture, South China Agricultural University, Guangzhou, China; Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou, China.
Key Laboratory of Crop Integrated Pest Management in South China, Ministry of Agriculture, South China Agricultural University, Guangzhou, China; Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou, China.
Ecotoxicol Environ Saf. 2023 Jun 23;262:115151. doi: 10.1016/j.ecoenv.2023.115151.
Lipids are main energy source for insects reproduction, which are becoming emerging target for pest management. Azadirachtin (AZA) is a multi-targeted and promising botanical insecticide, but its reproduction toxicity mechanism related to lipids metabolism is poorly understood. Here, we applied lipidomic and transcriptomic to provide a comprehensive resource for describing the effect of AZA on lipids remodeling in ovary of Spodoptera litura. The results showed that AZA exposure obviously altered the contents of 130 lipids subclasses (76 upregulated and 54 downregulated). In detail, AZA exposure changed the length and saturation degrees of fatty acyl chain of most glycerolipid, phospholipid and sphingolipid as well as the expression of genes related to biosynthesis of unsaturated fatty acids and fatty acids elongation. Besides, following the abnormal lipids metabolism, western blot analysis suggested that AZA induce insulin resistance-like phenotypes by inhibiting insulin receptor substrates (IRS) /PI3K/AKT pathway, which might be responsible for the ovary abnormalities of S. litura. Collectively, our study provided insights into the lipids metabolism event in S. litura underlying AZA exposure, these key metabolites and genes identified in this study would also provide important reference for pest control in future.
脂质是昆虫繁殖的主要能量来源,正成为害虫治理的新兴目标。印楝素(AZA)是一种具有多靶点且前景广阔的植物源杀虫剂,但其与脂质代谢相关的生殖毒性机制尚不清楚。在此,我们应用脂质组学和转录组学来全面描述AZA对斜纹夜蛾卵巢脂质重塑的影响。结果表明,暴露于AZA显著改变了130种脂质亚类的含量(76种上调,54种下调)。具体而言,暴露于AZA改变了大多数甘油脂、磷脂和鞘脂的脂肪酰链长度和饱和度,以及与不饱和脂肪酸生物合成和脂肪酸延长相关基因的表达。此外,在脂质代谢异常后,蛋白质免疫印迹分析表明,AZA通过抑制胰岛素受体底物(IRS)/PI3K/AKT途径诱导胰岛素抵抗样表型,这可能是导致斜纹夜蛾卵巢异常的原因。总体而言,我们的研究深入了解了斜纹夜蛾在暴露于AZA时的脂质代谢事件,本研究中鉴定的这些关键代谢物和基因也将为未来的害虫防治提供重要参考。