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Mating Behaviour and Vibratory Signalling in Non-Hearing Cave Crickets Reflect Primitive Communication of Ensifera

机译:交配行为和振动信号的非助听洞蟋蟀反映Ensifera的原始通讯

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摘要

In Ensifera, the lack of well-supported phylogeny and the focus on acoustic communication of the terminal taxa hinders understanding of the evolutionary history of their signalling behaviour and the related sensory structures. For Rhaphidophoridae, the most relic of ensiferans following morphology-based phylogenies, the signalling modes are still unknown. Together with a detailed description of their mating process, we provide evidence on vibratory signalling for the sympatric European species Troglophilus neglectus and T. cavicola. Despite their temporal shift in reproduction, the species’ behaviours differ significantly. Signalling by abdominal vibration constitutes an obligatory part of courtship in T. neglectus, while it is absent in T. cavicola. Whole-body vibration is expressed after copulation in both species. While courtship signalling appears to stimulate females for mating, the function of post-copulation signals remains unclear. Mating and signalling of both species were found to take place in most cases on bark, and less frequently on other available substrates, like moss and rock. The signals’ frequency spectra were substrate dependent, but with the dominant peak always expressed below 120 Hz. On rock, the intensity of T. neglectus courtship signals was below the species’ physiological detection range, presumably constraining the evolution of such signalling in caves. The species’ behavioural divergence appears to reflect their divergent mating habitats, in and outside caves. We propose that short-range tremulation signalling in courtship, such as is expressed by T. neglectus, represents the primitive mode and context of mechanical signalling in Ensifera. The absence of high-frequency components in the signals may be related to the absence of the crista acoustica homologue (CAH) in the vibratory tibial organ of Rhaphidophoridae. This indirectly supports the hypothesis proposing that the CAH, as an evolutionary precursor of the ear, evolved in Ensifera along the (more) complex vibratory communication, also associated with signals of higher carrier frequency.
机译:在Ensifera,缺乏良好的系统发育系统以及对末端类群的声学交流的关注阻碍了对其信号传导行为和相关感觉结构的进化史的理解。对于根瘤菌科(Rhaphidophoridae)(继基于形态学的系统发育史之后最古老的昆虫)而言,其信号传导模式仍然未知。连同对其交配过程的详细描述,我们为同胞欧洲物种Troglophilus neglectus和T. cavicola的振动信号提供了证据。尽管繁殖的时间发生了变化,但物种的行为却有很大不同。腹部振动发出的信号在T. neglectus中是求偶的必不可少的部分,而在T. cavicola中则没有。两种动物在交配后均表现出全身振动。虽然求爱信号似乎刺激雌性交配,但交配后信号的功能仍不清楚。在大多数情况下,发现这两种物种的交配和发信号都发生在树皮上,而在其他可用的基质(如苔藓和岩石)上发生的频率更低。信号的频谱取决于底物,但主峰始终表示在120 Hz以下。在岩石上,T。neglectus求偶信号的强度低于该物种的生理检测范围,大概是限制了此类信号在洞穴中的进化。该物种的行为差异似乎反映了它们在洞穴内部和外部的不同交配栖息地。我们建议在求偶中的短距离仿真信号,如由T. neglectus表示,代表Ensifera中机械信号的原始模式和上下文。信号中不存在高频成分可能与根瘤菌(Rhaphidophoridae)的振动性胫骨器官中不存在cr声同源物(CAH)有关。这间接支持了这样的假设,即CAH作为耳朵的进化前体,在Ensifera中沿着(更多)复杂的振动通信而发展,也与更高载波频率的信号相关。

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  • 作者

    Nataša Stritih; Andrej Čokl;

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  • 年(卷),期 -1(7),10
  • 年度 -1
  • 页码 e47646
  • 总页数 10
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