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Updated: Jan 9, 2026

Electrophysiological Measurements from a Moth Olfactory System
Published on: March 29, 2011
Sound production by hawkmoth larvae and pupae through abdominal spiracles
Shinji Sugiura1, Daichi Nakamori1, Kota Sakagami1
1Graduate School of Agricultural Science , Kobe University, Rokkodai, Nada, Kobe 657-8501, Japan.
None:
Some insect species produce defensive sounds across developmental stages. To test whether the characteristics, organs and mechanisms of sound production differ across stages within a single species, we examined how larvae and pupae of Phyllosphingia dissimilis (Lepidoptera: Sphingidae) produce sounds in response to simulated predator attacks via tactile stimulation. Laboratory experiments showed that final-instar larvae produce sound pulses (dominant frequency: 9.2-12.9 kHz; sound pressure level: 50.2-62.4 dB SPL) by expelling air through the pair of eighth abdominal (A8) spiracles, whereas pupae can produce sound pulses (3.8-21.6 kHz; 42.0-53.5 dB SPL) by forcing air through any of the spiracle pairs on the second to seventh abdominal segments (A2-A7). Despite differences in spiracle involvement, both stages employ a similar air-forcing mechanism. While the larval mechanism is known from other hawkmoth species, this is the first report of sound production via airflow through abdominal spiracles in insect pupae.
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