Cheng Jianjun, Chen Qinghua, Guo Qianshuang, Du Yongjun
Ministry of Agriculture Key Lab of Molecular Biology of Crop Pathogens and Insects, Key Laboratory of Biology of Crop Pathogens and Insects of Zhejiang Province, Zhejiang University, Hangzhou, China.
Institute of Plant Protection, Sichuan Academy of Agricultural Sciences/Key Laboratory of Integrated Pest Management on Crops in Southwest, Ministry of Agriculture, Chengdu, China.
Insect Sci. 2023 Apr;30(2):501-516. doi: 10.1111/1744-7917.13099. Epub 2022 Aug 23.
Premating behaviors mediated by pheromones play pivotal roles in animal mating choices. In natural populations of the striped stem borer Chilo suppressalis and the rice leaf roller Cnaphalocrocis medinalis in the rice field habitat, we discovered that Z11-16:Ald, a major component of the C. suppressalis pheromone, modulated the premating behavior of C. medinalis. Z11-16:Ald evoked a strong olfactory response in male antennae and strongly inhibited the sex pheromone trapping of male C. medinalis in the field. The functions of three C. medinalis sex pheromone receptor genes (CmedPR1-3) were verified through heterologous expression in Xenopus oocytes. CmedPR1 responded to Z11-18:OH and Z11-18:Ald, as well as the interspecific pheromone compound Z11-16:Ac of sympatric species; CmedPR2 responded to Z13-18:OH and Z13-18:Ald, as well as the sex pheromone compounds Z11-16:Ald and Z9-16:Ald of sympatric species; and CmedPR3 responded to Z11-18:OH and Z13-18:OH, as well as the interspecific pheromones Z11-16:OH, Z9-16:Ald, Z11-16:Ac, and Z11-16:Ald of sympatric species. Thus, CmedPR2 and CmedPR3 share the ligand Z11-16:Ald, which is not a component of the C. medinalis sex pheromone. Therefore, the sex pheromones of interspecific species affected the input of neural signals by stimulating the sex pheromone receptors on the antennae of male C. medinalis moths, thereby inhibiting the olfactory responses of the male moths to the sex pheromones. Our results demonstrate chemical communication among sympatric species in the rice field habitat, the recognition of intra- and interspecific sex pheromones by olfactory receptors, and how insect premating behaviors are modulated to possibly affect resource partitioning.
由信息素介导的交配前行为在动物交配选择中起着关键作用。在稻田生境中条纹螟虫(Chilo suppressalis)和稻纵卷叶螟(Cnaphalocrocis medinalis)的自然种群中,我们发现条纹螟虫性信息素的主要成分Z11-16:Ald调节了稻纵卷叶螟的交配前行为。Z11-16:Ald在雄性触角中引发强烈的嗅觉反应,并强烈抑制田间雄性稻纵卷叶螟的性信息素诱捕。通过在非洲爪蟾卵母细胞中的异源表达验证了三个稻纵卷叶螟性信息素受体基因(CmedPR1-3)的功能。CmedPR1对Z11-18:OH和Z11-18:Ald以及同域物种的种间信息素化合物Z11-16:Ac有反应;CmedPR2对Z13-18:OH和Z13-18:Ald以及同域物种的性信息素化合物Z11-16:Ald和Z9-16:Ald有反应;CmedPR3对Z11-18:OH和Z13-18:OH以及同域物种的种间信息素Z11-16:OH、Z9-16:Ald、Z11-16:Ac和Z11-16:Ald有反应。因此,CmedPR2和CmedPR3共享配体Z11-16:Ald,而Z11-16:Ald不是稻纵卷叶螟性信息素的成分。因此,种间性信息素通过刺激雄性稻纵卷叶螟蛾触角上的性信息素受体影响神经信号输入,从而抑制雄性蛾对性信息素的嗅觉反应。我们的结果证明了稻田生境中同域物种之间的化学通讯、嗅觉受体对种内和种间性信息素的识别,以及昆虫交配前行为如何被调节以可能影响资源分配。