Hunan Provincial Key Laboratory for Biology and Control of Plant Diseases and Insect Pests, College of Plant Protection, Hunan Agricultural University, Changsha, 410128, China.
Agriculture and Rural Department of Hunan Province, Plant Protection and Inspection Station, Changsha, 410005, China.
Mol Biol Rep. 2024 Jul 23;51(1):843. doi: 10.1007/s11033-024-09789-8.
Energy homeostasis is vital for insects to survive food shortages. This study investigated the starvation tolerance of Spodoptera frugiperda, which invaded China in 2019, focusing on its storage protein family, crucial for energy balance. 10 storage protein family members were identified and their expression patterns at different development stages and under different starvation stress were analyzed.
We used qPCR to evaluate the expression levels of storage protein family members under various larval instars and starvation conditions. We discovered that, among above 10 members, only 2 storage proteins, SfSP8 and SfSP7 showed significant upregulation in response to starvation stress. Notably, SfSP8 upregulated markedly after 24 h of fasting, whereas SfSP7 exhibited a delayed response, with significant upregulation observed only after 72 h of starvation. Then we significantly reduced the starvation tolerance of larvae through RNAi-mediated knockdown of SfSP8 and also altered the starvation response of SfSP7 from a late to an early activation pattern. Finally, we constructed transgenic Drosophila melanogaster with heterologous overexpressing SfSP8 revealed that the starvation tolerance of the transgenic line was significantly stronger than that of wild-type lines.
SfSP8 was the core storage protein member that mediated the starvation tolerance of larvae of S. frugiperda. Our study on the novel function of storage proteins in mediating larval starvation tolerance of S. frugiperda is conducive to understanding the strong colonization of this terrible invasive pest.
能量平衡对于昆虫在食物短缺时的生存至关重要。本研究调查了 2019 年入侵中国的草地贪夜蛾的耐饥饿能力,重点研究了对能量平衡至关重要的其贮存蛋白家族。鉴定了 10 个贮存蛋白家族成员,并分析了它们在不同发育阶段和不同饥饿胁迫下的表达模式。
我们使用 qPCR 评估了贮存蛋白家族成员在不同幼虫龄期和饥饿条件下的表达水平。我们发现,在上述 10 个成员中,只有 2 种贮存蛋白 SfSP8 和 SfSP7 对饥饿胁迫表现出明显的上调。值得注意的是,SfSP8 在禁食 24 小时后显著上调,而 SfSP7 的反应则延迟,仅在饥饿 72 小时后才出现显著上调。然后,我们通过 SfSP8 的 RNAi 介导敲低显著降低了幼虫的耐饥饿能力,还改变了 SfSP7 的饥饿反应,使其从晚期激活模式转变为早期激活模式。最后,我们构建了 SfSP8 异源过表达的转基因黑腹果蝇,发现转基因系的耐饥饿能力明显强于野生型系。
SfSP8 是介导草地贪夜蛾幼虫耐饥饿能力的核心贮存蛋白成员。我们对贮存蛋白在介导草地贪夜蛾幼虫耐饥饿能力方面的新功能的研究有助于理解这种可怕的入侵性害虫的强烈定植能力。