Key Laboratory of Plant Protection Resources and Pest Management, Ministry of Education, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, 712100, China.
Centre of Excellence in Natural Resource Management, University of Western Australia, Albany, 6330, Australia.
Sci Rep. 2017 Jul 25;7(1):6453. doi: 10.1038/s41598-017-06825-5.
The functions of female song found in a few cicadas have rarely been studied. In the cicada Subpsaltria yangi we investigated the acoustic behaviour and signal structure of songs produced by females, the phonotaxis of males, and mate choice, as well as the selective pressure imposed on this species by predators. Pair-formation in S. yangi occurs when males signal, females respond, then males move to signaling females, which is opposite to that in most other cicadas where females move to calling males. Females only mate once and are sexually unreceptive after copulation. Most males mate once, but ~25% mate multiply. Females display little direct evidence of mate preference or choice of males, and all mate encounters led to a successful mating. Only males are attacked by a robber fly, Philonicus albiceps, while flying to females. This imposes strong selection on males - only males who can evade predators mate. Males are also attracted to human simulations of female calls. This behaviour exposes the mating system to impacts from anthropogenic noise systems which could disrupt mating activity of this species. Our results improve the understanding of mate choice/competition in cicadas, and are valuable for future studies of the evolution of sound communication in the Cicadoidea.
在少数几种蝉中,雌性的鸣叫功能很少被研究过。我们研究了雌性产生的鸣叫声的声学行为和信号结构、雄性的声向反应以及求偶选择,以及捕食者对该物种施加的选择压力。在 Subpsaltria yangi 蝉中,当雄性发出信号时,雌性做出回应,然后雄性向发出信号的雌性移动,这与大多数其他蝉不同,在大多数其他蝉中,雌性向鸣叫的雄性移动。雌性只交配一次,交配后就不再接受交配。大多数雄性只交配一次,但约 25%的雄性多次交配。雌性几乎没有表现出对雄性的直接求偶偏好或选择,而且所有的交配遭遇都导致了成功的交配。只有雄性在飞向雌性时会受到盗蝇 Philonicus albiceps 的攻击。这对雄性施加了强烈的选择压力——只有能够逃避捕食者的雄性才能交配。雄性也会被人类模拟的雌性叫声吸引。这种行为使交配系统容易受到人为噪声系统的影响,这可能会干扰该物种的交配活动。我们的研究结果提高了对蝉类求偶/竞争的理解,对未来蝉目声音通讯进化的研究具有重要价值。