Familial bias and auditory feedback regulation of vocal babbling patterns during early song development

Learned vocalizations are a crucial acoustic biosignal conveying individual traits in many species. Songbirds learn song patterns by listening to a tutor song and performing vocal practice during a sensitive developmental period. However, when and how individual differences in song patterns develop...

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Veröffentlicht in:Scientific reports 2016-07, Vol.6 (1), p.30323-30323, Article 30323
Hauptverfasser: Sato, Daisuke, Mori, Chihiro, Sawai, Azusa, Wada, Kazuhiro
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Mori, Chihiro
Sawai, Azusa
Wada, Kazuhiro
description Learned vocalizations are a crucial acoustic biosignal conveying individual traits in many species. Songbirds learn song patterns by listening to a tutor song and performing vocal practice during a sensitive developmental period. However, when and how individual differences in song patterns develop remain unknown. Here, we report that individual differences in vocal output exist even at the earliest song development stage, called subsong. Experiments involving the manipulation of both breeding pairs and song tutoring conditions revealed that the parental pair combination contributes to generating familial differences in syllable duration and variability in the subsong of offspring. Furthermore, after deafening, juveniles immediately changed their subsong by shortening the syllable durations but maintained the individual variability of their subsong temporal patterns, suggesting both auditory-sensitive modification and independent intrinsic regulation of vocal output. These results indicate that the temporal patterns of subsong are not merely disordered vocalization but are regulated by familial bias with sensitivity to auditory feedback, thus generating individual variability at the initiation of vocal development.
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subjects 631/378/2629/2631
631/601/18
Animals
Auditory Perception
Feedback, Sensory
Finches - physiology
Humanities and Social Sciences
Learning
Male
multidisciplinary
Science
Vocalization, Animal
title Familial bias and auditory feedback regulation of vocal babbling patterns during early song development
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