Institute of Biology, University of Madrid, Pozuelo de Alarcon, 28223 Madrid, Spain.
Sorbonne Université, INRA, CNRS, UPEC, IRD, Univ. P7, Institute of Ecology and Environmental Sciences of Paris, 78026 Versailles, France.
Horm Behav. 2023 Apr;150:105330. doi: 10.1016/j.yhbeh.2023.105330. Epub 2023 Feb 13.
In insects, juvenile hormone (JH) is critical for the orchestration of male reproductive maturation. For instance, in the male moth, Agrotis ipsilon, the behavioral response and the neuronal sensitivity within the primary olfactory centers, the antennal lobes (ALs), to the female-emitted sex pheromone increase with fertility during adulthood and the coordination between these events is governed by JH. However, the molecular basis of JH action in the development of sexual behavior remains largely unknown. Here, we show that the expression of the paralogous JH receptors, Methoprene-tolerant 1 and 2 (Met1, Met2) and of the JH-inducible transcription factor, Krüppel homolog 1 (Kr-h1) within ALs raised from the third day of adult life and this dynamic is correlated with increased behavioral responsiveness to sex pheromone. Met1-, Met2- and Kr-h1-depleted sexually mature males exhibited altered sex pheromone-guided orientation flight. Moreover, injection of JH-II into young males enhanced the behavioral response to sex pheromone with increased AL Met1, Met2 and Kr-h1 mRNA levels. By contrast, JH deficiency suppressed the behavioral response to sex pheromone coupled with reduced AL Met1, Met2 and Kr-h1 mRNA levels in allatectomized old males and these inhibitions were compensated by an injection of JH-II in operated males. Our results demonstrated that JH acts through Met-Kr-h1 signaling pathway operating in ALs, to promote the pheromone information processing and consequently the display of sexual behavior in synchronization with fertility to optimize male reproductive fitness. Thus, this study provides insights into the molecular mechanisms underlying the hormonal regulation of reproductive behavior in insects.
在昆虫中,保幼激素 (JH) 对于雄性生殖成熟的协调至关重要。例如,在雄性蛾 Agrotis ipsilon 中,对雌性释放的性信息素的行为反应和初级嗅觉中心——触角叶 (AL) 中的神经元敏感性随着成年后的生育能力而增加,并且这些事件之间的协调受 JH 控制。然而,JH 在性行为发育中的作用的分子基础在很大程度上仍然未知。在这里,我们表明,来自成年后第三天的 AL 中,同源物 1 和 2 (Met1、Met2) 和 JH 诱导的转录因子 Krüppel 同源 1 (Kr-h1) 的表达增加,并且这种动态与对性信息素的行为反应性增加相关。Met1、Met2 和 Kr-h1 耗尽的性成熟雄性表现出改变的性信息素导向的定向飞行。此外,向年轻雄性注射 JH-II 增强了对性信息素的行为反应,同时增加了 AL Met1、Met2 和 Kr-h1 mRNA 水平。相比之下,JH 缺乏与在去势的老年雄性中 AL Met1、Met2 和 Kr-h1 mRNA 水平降低相关联地抑制了对性信息素的行为反应,并且在操作后的雄性中注射 JH-II 可以补偿这些抑制作用。我们的研究结果表明,JH 通过在 AL 中作用的 Met-Kr-h1 信号通路发挥作用,以促进信息素处理,从而与生育能力同步显示性行为,以优化雄性生殖适应性。因此,这项研究为昆虫生殖行为的激素调节的分子机制提供了深入的了解。