College of Life Science, Hebei University, Baoding, China.
Hebei Basic Science Center for Biotic Interaction, Hebei University, Baoding, China.
Pest Manag Sci. 2024 Nov;80(11):5672-5683. doi: 10.1002/ps.8285. Epub 2024 Jul 10.
Sensing dietary components in the gut is important to ensure an appropriate hormonal response and metabolic regulation after food intake. The fall webworm, Hyphantria cunea, is a major invasive pest in China and has led to significant economic losses and ecosystem disruption. The larvae's broad host range and voracious appetite for leaves make H. cunea a primary cause of serious damage to both forests and crops. To date, however, the gustatory receptors (Grs) of H. cunea and their regulatory function remain largely unknown.
We identified the fall webworm gustatory receptor HcGr76 as a fructose and chlorogenic acid receptor using Ca imaging and determination of intracellular Ca concentration by a microplate reader. Moreover, reverse transcription-quantitative polymerase chain reaction (RT-qPCR) analysis revealed that HcGr76 is highly expressed in the anterior and middle midgut. Knockdown of HcGr76 caused a significant reduction in the expression of neuropeptide F 1 (NPF1) and CCHamide-2, and led to a decrease in carbohydrate and lipid levels in the hemolymph.
Our studies provide circumstantial evidence that HcGr76 expressed in the midgut is involved in sensing dietary components, and regulates the expression of relevant peptide hormones to alter metabolism in H. cunea larvae, thus providing a promising molecular target for the development of new insect-specific control products. © 2024 Society of Chemical Industry.
在肠道中感知膳食成分对于确保进食后适当的激素反应和代谢调节非常重要。秋枫夜蛾(Hyphantria cunea)是中国主要的入侵性害虫,已导致重大的经济损失和生态系统破坏。幼虫广泛的宿主范围和对叶子的贪婪食欲使其成为森林和作物严重破坏的主要原因。然而,迄今为止,H. cunea 的味觉受体(Grs)及其调节功能在很大程度上仍然未知。
我们使用钙成像和微孔板读数测定细胞内 Ca 浓度的方法,鉴定出秋枫夜蛾味觉受体 HcGr76 是果糖和绿原酸受体。此外,逆转录定量聚合酶链反应(RT-qPCR)分析表明,HcGr76 在中肠的前肠和中肠高度表达。HcGr76 的敲低导致神经肽 F1(NPF1)和 CCHamide-2 的表达显著减少,并导致血淋巴中碳水化合物和脂质水平降低。
我们的研究提供了间接证据,表明中肠表达的 HcGr76 参与了膳食成分的感知,并调节相关肽激素的表达,从而改变 H. cunea 幼虫的代谢,因此为开发新的昆虫特异性控制产品提供了有前途的分子靶标。© 2024 化学工业协会。