Department of Entomology and MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing 100193, China.
State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
J Insect Physiol. 2021 Aug-Sep;133:104276. doi: 10.1016/j.jinsphys.2021.104276. Epub 2021 Jul 7.
The insect taste system regulates insect feeding behavior and patterns of food consumption. In this study, we showed that the medial and lateral sensilla styloconica in the mouthparts of 5th-instar Asian corn borer larvae are sensitive to fructose and sucrose in a concentration-dependent way. The two sensilla produced significant electrophysiological responses (greater than100 spikes/s) by exposure to 10 mM fructose or sucrose. However, electrophysiological responses and feeding preferences to fructose or sucrose were inhibited by neuropeptide F double-stranded RNA (dsNPF). Additionally, the medial sensilla styloconica are sensitive to low concentrations of the deterrents caffeine and nicotine. However, starvation, followed by increases in larval npf expression plus feeding, led to increases in spike frequencies of related sensilla to fructose, sucrose, and deterrents. In contrast, these responses were reduced on the dsNPF treatment. Our results suggest that NPF plays an important role influencing caterpillar feeding behavior through regulating the taste neurons of the sensilla styloconica.
昆虫的味觉系统调节昆虫的摄食行为和食物消耗模式。在这项研究中,我们表明,5 龄亚洲玉米螟幼虫口器中的中侧感觉刚毛感受器对果糖和蔗糖具有浓度依赖性的敏感性。这两种感受器在暴露于 10mM 果糖或蔗糖时会产生显著的电生理反应(大于 100 个尖峰/s)。然而,神经肽 F 双链 RNA(dsNPF)抑制了对果糖或蔗糖的电生理反应和摄食偏好。此外,中侧感觉刚毛感受器对低浓度的抑制剂咖啡因和尼古丁敏感。然而,饥饿后,幼虫 npf 表达增加加上摄食,导致与果糖、蔗糖和抑制剂相关的感觉刚毛的尖峰频率增加。相比之下,dsNPF 处理减少了这些反应。我们的结果表明,NPF 通过调节感觉刚毛感受器的味觉神经元,在影响毛虫摄食行为方面发挥重要作用。