Fang Haibo, Wang Xiu, Liu Xiaoxia, Michaud J P, Wu Yanan, Zhang Huaijiang, Li Yisong, Li Zhen
Department of Entomology and MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing, China.
Chinese Academy of Medical Sciences and Peking Union Medical College, Institute of Medicinal Plant Development, Beijing, China.
Insect Mol Biol. 2022 Oct;31(5):659-670. doi: 10.1111/imb.12794. Epub 2022 Jun 29.
As an intermediate molecule in the Insulin/Insulin-like growth factor signalling pathway (IIS), the insulin receptor (IR) plays vital roles linking nutritional signals to the downstream regulation of metabolic homeostasis, development, metamorphosis, reproduction and stress responses. In the present study, we describe the molecular characteristics of IR in the cosmopolitan fruit boring pest, Grapholita molesta, and its predicted posttranscription regulator miR-982490, and elucidate its regulatory roles in glucolipid homeostasis and metamorphosis. Phylogenetic and domain analyses indicate that lepidopteran IRs normally cluster within families, and that four main domains are conserved in GmIR and those of other Lepidoptera. Bio-informatic prediction, synchronic expression profile evaluation and dual luciferase reporter assays indicated negative regulation of GmIR by miR-982490. Injection of miR-982490 agomir into fifth instar larvae yielded effects similar to dsGmIR injection, resulting in enhanced levels of trehalose and triglyceride in haemolymph, and reduced pupation success and pupal weight, both of which could be rescued by co-injection of dsGmIR and miR-982490 antagomir. We infer that GmIR regulates glucolipid homeostasis and affects G. molesta metamorphosis via interactions with its posttranscriptional regulator miR-982490. This study expands our understanding of the regulatory network of IIS in insect nutritional homeostasis and development.
作为胰岛素/胰岛素样生长因子信号通路(IIS)中的一个中间分子,胰岛素受体(IR)在将营养信号与代谢稳态、发育、变态、繁殖及应激反应的下游调节联系起来方面发挥着至关重要的作用。在本研究中,我们描述了世界性果实钻蛀害虫梨小食心虫(Grapholita molesta)中IR的分子特征及其预测的转录后调节因子miR-982490,并阐明了其在糖脂稳态和变态中的调节作用。系统发育和结构域分析表明,鳞翅目昆虫的IR通常在科内聚类,且GmIR和其他鳞翅目昆虫的IR中四个主要结构域是保守的。生物信息学预测、同步表达谱评估和双荧光素酶报告基因检测表明miR-982490对GmIR具有负调控作用。向五龄幼虫注射miR-982490激动剂产生了与注射dsGmIR类似的效果,导致血淋巴中海藻糖和甘油三酯水平升高,化蛹成功率和蛹重降低,而同时注射dsGmIR和miR-982490拮抗剂可挽救这两种情况。我们推断GmIR通过与其转录后调节因子miR-982490相互作用来调节糖脂稳态并影响梨小食心虫的变态。本研究扩展了我们对IIS在昆虫营养稳态和发育中的调控网络的理解。