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首页> 外文期刊>Journal of Chemical Ecology >Male Bugs Modulate Pheromone Emission in Response to Vibratory Signals from Conspecifics
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Male Bugs Modulate Pheromone Emission in Response to Vibratory Signals from Conspecifics

机译:雄性虫害响应信息素的振动信号调节信息素的释放。

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摘要

Male Nezara viridula emit a volatile sex pheromone that acts as a long-range attractant to females. Both sexes communicate through vibrations once they are on the same plant. Males respond to the female calling song by emitting a male courtship song, and they orient to the female calling song on a plant. Simultaneity between vibratory and chemical communication during the last steps of mate finding suggests that pheromone emission might be modulated by signals from conspecifics. Male volatile emissions were collected with fibers for solid-phase microextraction, while male bugs were stimulated with natural and artificial signals. Percentages of males releasing pheromone and collected amounts of pheromone increased when males were stimulated with female calling song. Pheromone emission was stable in males stimulated with male rivalry songs, and it decreased in males stimulated with a 100-Hz artificial signal. The ability of male bugs to modulate their pheromone emission may reduce metabolic costs, reduce parasitism, and offer a better synchronization of sexual activity.
机译:雄性内扎长毛鸢尾散发出挥发性的性信息素,对雌性有长距离的吸引作用。一旦他们在同一个植物上,两性就通过振动进行交流。雄性通过发出雄性求爱歌来回应雌性召唤歌,然后在植物上定向雌性召唤歌。在寻找伴侣的最后步骤中,振动和化学通讯同时进行,这表明信息素的释放可能受到同种异体信号的调节。用纤维收集雄性挥发物进行固相微萃取,用自然和人工信号刺激雄性臭虫。当雄性被雌性调用歌刺激时,雄性释放信息素和收集的信息素的百分比增加。在雄性竞争歌曲刺激下的雄性中,信息素的释放是稳定的,而在100-Hz人工信号刺激下的雄性中,信息素的释放却减少了。雄性虫调节其信息素释放的能力可以降低代谢成本,减少寄生虫,并提供更好的性活动同步性。

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