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The unique sound production of the Death's-head hawkmoth (Acherontia atropos (Linnaeus, 1758)) revisited

机译:重新审视了死头天蛾的声音产生(Acherontia atropos(Linnaeus,1758))

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摘要

When disturbed, adults of the Death's-head hawkmoth (Lepidoptera, Sphingidae: Acherontia atropos) produce short squeaks by drawing in and deflating air into and out of the pharynx as a defence mechanism. We took a new look at Prell's hypothesis of a two-phase mechanism by providing new insights into the functional morphology behind the pharyngeal sound production of this species. First, we compared the head anatomy of A. atropos with another sphin-gid species, Manduca sexta, by using micro-computed tomography (CT) and 3D reconstruction methods. Despite differences in feeding behaviour and capability of sound production in the two species, the musculature in the head is surprisingly similar. However, A. atropos has a much shorter proboscis and a modified epipharynx with a distinct sclerotised lobe projecting into the opening of the pharynx. Second, we observed the sound production in vivo with X-ray videography, mammography CT and high-speed videography. Third, we analysed acoustic pressure over time and spectral frequency composition of six A. atropos specimens, both intact and with a removed proboscis. Single squeaks of A. atropos last for ca. 200 ms and consist of an inflation phase, a short pause and a deflation phase. The inflation phase is characterised by a burst of ca. 50 pulses with decreasing pulse frequency and a major frequency peak at ca. 8 kHz, followed by harmonics ranging up to more than 60 kHz. The deflation phase is characterised by a less clear acoustic pattern, a lower amplitude and more pronounced peaks in the same frequency range. The removal of the proboscis resulted in a significantly shortened squeak, a lower acoustic pressure level and a slightly more limited frequency spectrum. We hypothesise that the uptake of viscous honey facilitated the evolution of an efficient valve at the opening of the pharynx (i.e. a modified epipharynx), and that sound production could relatively easily have evolved based on this morphological pre-adaptation.
机译:当被打扰时,成年鹰头天蛾(鳞翅目,鞘翅目:Acherontia atropos)的成虫会通过吸​​入和排出空气进入咽喉和从咽喉排出作为防御机制而发出短促的尖叫声。通过提供有关该物种的咽部声音产生背后的功能形态的新见解,我们对Prell的两相机制假说有了新的认识。首先,我们使用微计算机断层扫描(CT)和3D重建方法比较了A. atropos的头部解剖结构与另一种狮身人种Manduca sexta。尽管两种动物的进食行为和发声能力有所不同,但头部的肌肉组织却惊人地相似。但是,A。atropos的舌头短得多,且修饰的上咽具有明显的硬化叶突出到咽部的开口。其次,我们通过X射线摄影,乳腺X线摄影和高速摄影来观察体内的声音产生。第三,我们分析了六个完整的和去除了长鼻的A. atropos标本随时间的声压和频谱频率组成。 A. atropos的单次吱吱声持续约200毫秒,包括充气阶段,短暂停顿和放气阶段。充气阶段的特点是爆发约。 50个脉冲,脉冲频率降低,主频率峰值约在。 8 kHz,其次是高达60 kHz以上的谐波。放气阶段的特征在于,在相同的频率范围内,声音模式较不清晰,振幅较低且峰值更为明显。去除长鼻导致吱吱声明显缩短,声压级降低和频谱有限。我们假设粘性蜂蜜的摄取促进了咽部开口处有效瓣膜的进化(即修饰的咽部),并且基于这种形态学预适应,声音产生可能相对容易地进化了。

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  • 来源
    《Naturwissenschaften》 |2015年第8期|43.1-43.13|共13页
  • 作者单位

    Institut fuer Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universitaet Jena, Jena, Germany;

    Ernst-Abbe-Hochschule Jena, Jena, Germany;

    Functional Morphology and Biomechanics, Kiel University, Kiel, Germany;

    Functional Morphology and Biomechanics, Kiel University, Kiel, Germany;

    Ernst-Abbe-Hochschule Jena, Jena, Germany;

    Institut fuer Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universitaet Jena, Jena, Germany;

    Institut fuer Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universitaet Jena, Jena, Germany;

    Institut fuer Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universitaet Jena, Jena, Germany;

    Universitaetsklinikum Jena, Jena, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Insect anatomy; Insect head; Proboscis; Manduca sexta; X-ray imaging; Insect acoustics; Videography;

    机译:昆虫解剖;虫头长鼻;番duc X射线成像;昆虫声学;摄影作品;

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