长角甲虫Batocera lineolata的发声和声学信号(鞘翅目:Cerambycidae)

Changqing Luo, Shihui Huang
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引用次数: 2

摘要

昆虫已经进化出不同的结构和发声方式,这些发声方式在昆虫生物学的许多方面起着至关重要的作用,例如繁殖和捕食者-猎物的相互作用。在声学昆虫中,虽然甲虫有多种发声器官,但这些昆虫的声学行为却很少受到关注。本文首次对雄性长角甲虫(Batocera lineolata)的发声器官、发声行为和声信号进行了研究。介绍了鸣器的锉刀和刮刀的详细形态。行为观察表明,声音的产生与前前额的快速向前和向后运动有关。前位向前和向后的运动都可以引起锉刀和刮刀之间的相互作用,分别产生前向啁啾和后向啁啾。向上和向后啁啾的示波器和频谱比较表明,两种啁啾在时间和幅度特征上存在显著差异,但具有相似的频谱特征。对大多数天牛的声学研究是非常必要的,这可能会在许多领域做出重大贡献,如天牛声学行为的进化和多样性,以及声音在天牛分类中使用的可能性。
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Stridulatory sound production and acoustic signals of the longhorn beetle Batocera lineolata (Coleoptera: Cerambycidae)
ABSTRACT Insects have evolved different structures and ways to produce sounds which play a crucial role in many aspects of insect biology, such as reproduction and predator–prey interactions. Among acoustic insects, although a variety of stridulatory organs have been reported in beetles, acoustic behaviour of these insects has received little attention. Here, stridulatory organs, sound-producing behaviour and acoustic signals in males of the longhorn beetle Batocera lineolata were investigated for the first time. The detailed morphology of the file and scraper of the stridulatory organ are presented. Behavioural observations showed that sound production was associated with the rapid forward and backward movements of the pronotum. The forward and backward movements of the pronotum can both cause interactions between the file and scraper, and produce forward chirps and backward chirps, respectively. Oscillogram and frequency spectrum comparisons of the upward and backward chirps revealed that the two types of chirps exhibited significant differences in temporal and amplitude features, but had similar spectral characteristics. Acoustic studies on most longhorn beetles are strongly needed, which may make significant contributions in many areas, such as the evolution and diversity of the acoustic behaviour and the possibility of use of sounds in taxonomy of longhorn beetles.
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来源期刊
CiteScore
4.50
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: Bioacoustics primarily publishes high-quality original research papers and reviews on sound communication in birds, mammals, amphibians, reptiles, fish, insects and other invertebrates, including the following topics : -Communication and related behaviour- Sound production- Hearing- Ontogeny and learning- Bioacoustics in taxonomy and systematics- Impacts of noise- Bioacoustics in environmental monitoring- Identification techniques and applications- Recording and analysis- Equipment and techniques- Ultrasound and infrasound- Underwater sound- Bioacoustical sound structures, patterns, variation and repertoires
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