Department of Crop and Forest Sciences, University of Lleida, Av. Alcalde Rovira Roure 191, 25198, Lleida, Spain.
Gaiagen Technologies Pvt Ltd (Formerly Pest Control India Pvt Ltd), Bengaluru, 562163, India.
Sci Rep. 2022 Apr 29;12(1):7019. doi: 10.1038/s41598-022-10954-x.
Female moths emit sex pheromone to attracts males, and although they are not attracted to their own sex pheromone, they appear to detect it as it affects their behavior. In order to elucidate the mechanism of pheromone "autodetection" we compared responses of olfactory receptor neurons (ORNs) of male and female Grapholita molesta, a species with reported pheromone autodetection. Two concentrations of the major (Z8-12:Ac) and minor (E8-12:Ac) sex pheromone components, a plant-volatile blend containing methyl salicylate, terpinyl acetate and (E)-β-farnesene, and the male-produced hair-pencil (i.e., courtship) pheromone (ethyl trans-cinnamate) were tested in 45 male and 305 female ORNs. Hierarchical cluster analysis showed radically different peripheral olfactory systems between sexes that could be linked to their specific roles. In males 63% of the ORNs were tuned specifically to the major or minor female sex pheromone components, and 4% to the plant volatile blend, while the remaining 33% showed unspecific responses to the stimulus panel. In females 3% of the ORNs were specifically tuned to the male hair-pencil pheromone, 6% to the plant volatile blend, 91% were unspecific, and no ORN was tuned their own sex pheromone components. The lack of sex pheromone-specific ORNs in females suggests that they are not able to discriminate pheromone blends, and thus pheromone autodetection is unlikely in this species. We discuss our results in the context of the methodological limitations inherent to odor stimulation studies.
雌蛾会释放性信息素来吸引雄蛾,尽管它们自身的性信息素不会吸引它们,但它们似乎能察觉到这种信息素,因为它会影响它们的行为。为了阐明信息素“自检测”的机制,我们比较了具有报道称能自检测性信息素的物种桃小食心虫的雄蛾和雌蛾的嗅觉受体神经元(ORNs)的反应。我们用两种浓度的主要(Z8-12:Ac)和次要(E8-12:Ac)性信息素成分、一种含有水杨酸甲酯、乙酸松油酯和(E)-β-法尼烯的植物挥发物混合物,以及雄蛾产生的发刷(即求偶)信息素(反式肉桂酸乙酯)来测试 45 个雄蛾 ORNs 和 305 个雌蛾 ORNs。层次聚类分析显示,雌雄之间的外周嗅觉系统存在明显差异,这可能与其特定的作用有关。在雄蛾中,63%的 ORNs 对主要或次要的雌性性信息素成分有特定的反应,4%的 ORNs 对植物挥发物混合物有特定的反应,而其余 33%的 ORNs 对刺激面板没有特定的反应。在雌蛾中,3%的 ORNs 对雄蛾发刷信息素有特定的反应,6%的 ORNs 对植物挥发物混合物有特定的反应,91%的 ORNs 没有特定的反应,没有 ORN 对自身的性信息素成分有特定的反应。雌蛾中缺乏性信息素特异性 ORNs 表明它们无法区分信息素混合物,因此在这个物种中不太可能发生信息素自检测。我们根据气味刺激研究中固有的方法学限制讨论了我们的结果。