Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan 250100, China.
Key Laboratory of Natural Enemies Insects, Ministry of Agriculture and Rural Affairs, Jinan 250100, China.
Int J Mol Sci. 2024 Sep 27;25(19):10441. doi: 10.3390/ijms251910441.
The agricultural pest exhibits a strong preference for feeding on fresh fruits, demonstrating high adaptability to sugary environments. Meanwhile, high sugar levels stimulate insulin secretion, thereby regulating the steady state of sugar metabolism. Understanding the mechanisms related to sugar metabolism in is crucial due to its adaptation to these specific environmental conditions. The insulin signaling pathway is an evolutionarily conserved phosphorylation cascade with significant roles in development and metabolism. We observed that the activation of the insulin signaling pathway inhibited FoxO activity and downregulated the expression of , thereby activating glycolysis and reducing glucose levels. By contrast, inhibiting insulin signaling increased the FoxO activity and upregulated the expression of , which activated gluconeogenesis and led to increased glucose levels. Our findings demonstrated the crucial role of the insulin signaling pathway in mediating glucose metabolism through the FoxO-Pepck axis, which supports the ecological adaptation of to high-sugar niches, thereby providing insights into its metabolic control and suggesting potential strategies for pest management. Elucidating these molecular processes is important for understanding metabolic regulation and ecological specialization in .
农业害虫表现出强烈的喜好以新鲜水果为食的特性,对含糖环境具有很高的适应性。同时,高糖水平会刺激胰岛素分泌,从而调节糖代谢的稳态。了解与 适应这些特定环境条件相关的糖代谢机制至关重要。胰岛素信号通路是一种进化上保守的磷酸化级联反应,在发育和代谢中具有重要作用。我们观察到,胰岛素信号通路的激活抑制了 FoxO 的活性并下调了 的表达,从而激活了糖酵解并降低了葡萄糖水平。相比之下,抑制胰岛素信号会增加 FoxO 的活性并上调 的表达,从而激活糖异生并导致葡萄糖水平升高。我们的研究结果表明,胰岛素信号通路通过 FoxO-Pepck 轴在调节葡萄糖代谢中起着关键作用,这支持了 对高糖小生境的生态适应,从而为其代谢控制提供了新的见解,并提出了害虫管理的潜在策略。阐明这些分子过程对于理解 的代谢调控和生态特化具有重要意义。