性信息素
信息素
嗅觉
生物
求爱
触角电图
求偶展示
动物交流
性行为
钙显像
神经科学
竞赛(生物学)
对抗
性别选择
气味
化学通讯
进化生物学
动物
嗅觉感受器
生态学
机制(生物学)
细胞生物学
触角叶
生殖成功
精子竞争
受体
化学生态学
嗅觉计
嗅觉系统
性吸引
扁桃形结构
电生理学
交配
化学受体
有性生殖
生殖道
嗅觉线索
有害生物分析
沟通
嗅觉知觉
作者
Dongdong Sun,Y ZHANG,X Wang,Yong Wang,Guirong Wang,Yang Liu
标识
DOI:10.1073/pnas.2600174123
摘要
Sexual competition among males drives the evolution of diverse reproductive strategies in insects, including the use of chemical signals to influence the behavior of rivals. Yet, the role of chemically mediated male–male competition remains underexplored in moths. Here, we show that male Mythimna separata moths emit benzaldehyde (BA) during courtship competition to disrupt rivals’ ability to detect the female sex pheromone (Z)-11-hexadecenal (Z11-16:Ald). BA release is socially regulated and increases markedly under high male density and in the presence of female-derived cues or synthetic Z11-16:Ald. Electrophysiological recordings and calcium imaging assays indicate that BA suppresses peripheral olfactory responses by competitively inhibiting the Z11-16:Ald-specific receptor MsepPR3 at the ligand-binding site, as confirmed through structural modeling and dynamics simulations. This receptor-level antagonism represents a mechanism of olfactory disruption during reproductive competition. Our findings reveal a context-dependent strategy through which male moths disrupt rival chemosensory perception, providing insight into the evolution of sexual signaling and suggesting receptor-targeted approaches for future pest management applications.
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