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What's the buzz? Ultrasonic and sonic warning signals in caterpillars of the great peacock moth (Saturnia pyri)

机译:嗡嗡声是什么?孔雀蛾(Saturnia pyri)的毛虫中的超声波和声音警告信号

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Caterpillars have many natural enemies and, therefore, have evolved a diversity of antipredator strategies. Most research focuses on those strategies (crypsis, countershading, and warning coloration) targeting visually guided predators. In contrast, defensive sounds, although documented for more than a century, have been poorly studied. We report on a novel form of sound production-chirping-in caterpillars of the common European Great Peacock moth (Saturnia pyri). Chirps are broadband, with dominant peaks ranging between the sonic (3.7 kHz) and ultrasonic (55.1 kHz) and are generated by a rapid succession of mandibular "tooth strikes." Chirp trains are induced by simulated predator attacks and precede or accompany the secretion of a defensive chemical from integumental bristles, supporting our hypothesis that these sounds function in acoustic aposematism. We propose that these caterpillars generate multimodal warning signals (visual, chemical, and acoustic) to target the dominant sensory modalities of different predators, including birds, bats, and invertebrates.
机译:毛毛虫有许多天敌,因此,进化出了多种反掠食者策略。大多数研究集中于针对视觉引导的掠食者的那些策略(隐窝,阴影和警告着色)。相比之下,防御性声音虽然已有一个多世纪的记载,但研究却很少。我们报告了一种常见的欧洲大孔雀蛾(Saturnia pyri)的声音产生chi毛虫的新型形式。线性调频脉冲是宽带的,其主要峰值在声波(3.7 kHz)和超声(55.1 kHz)之间,并且是由快速连续的下颌“牙齿撞击”产生的。 rp火车是由模拟的捕食者攻击引起的,并先于或伴随着防御性化学物质从皮毛中分泌出来,这支持了我们的假设,即这些声音在声学止咳中起作用。我们建议这些毛毛虫生成多模式警告信号(视觉,化学和声音),以针对不同掠食者(包括鸟类,蝙蝠和无脊椎动物)的主要感官模式。

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