首页> 外文期刊>The Journal of Experimental Biology >Experience-dependent modulation of antennal sensitivity and input to antennal lobes in male moths (Spodoptera littoralis) pre-exposed to sex pheromone.
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Experience-dependent modulation of antennal sensitivity and input to antennal lobes in male moths (Spodoptera littoralis) pre-exposed to sex pheromone.

机译:经验依赖的触角灵敏度调制和输入到预先暴露于性信息素的雄蛾( Spodoptera littoralis )触角的输入中。

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摘要

Sex pheromones are intraspecific olfactory signals emitted by one sex to attract a potential mating partner. Behavioural responses to sex pheromones are generally highly stereotyped. However, they can be modulated by experience, as male moths previously exposed to female sex pheromone respond with a lower threshold upon further detection, even after long delays. Here, we address the question of the neural mechanisms underlying such long-term modulation. As previous work has shown increased responses to pheromone in central olfactory neurons, we asked whether brief exposure to the pheromone increases input activity from olfactory receptor neurons. Males pre-exposed to sex pheromone exhibited increased peripheral sensitivity to the main pheromone component. Among nine antennal genes targeted as putatively involved in pheromone reception, one encoding a pheromone-binding protein showed significant upregulation upon exposure. In the primary olfactory centre (antennal lobe), the neural compartment processing the main pheromone component was enlarged after a brief pheromone exposure, thus suggesting enduring structural changes. We hypothesise that higher peripheral sensitivity following pre-exposure leads to increased input to the antennal lobe, thus contributing to the structural and functional reorganization underlying a stable change in behaviour.
机译:性信息素是一种性别发出的种内嗅觉信号,以吸引潜在的交配伴侣。对性信息素的行为反应通常被高度定型。但是,它们可以根据经验进行调整,因为先前暴露于雌性信息素的雄蛾即使经过长时间的延迟,在进一步检测时也会以较低的阈值做出响应。在这里,我们解决了这种长期调制背后的神经机制问题。由于先前的研究表明中枢嗅觉神经元对信息素的反应增加,因此我们询问短暂暴露于信息素是否会增加嗅觉受体神经元的输入活性。预先暴露于性信息素的男性对主要信息素成分的外周敏感性增强。在九种被认为可能参与信息素接收的触角基因中,一个编码信息素结合蛋白的基因在暴露后显示出明显的上调。在初级嗅觉中心(肛门叶),短暂暴露信息素后,处理主要信息素成分的神经区室扩大,因此表明存在持久的结构变化。我们假设预暴露后更高的外周敏感性导致触角叶输入增加,从而促进了行为稳定变化的结构和功能重组。

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