2025/06/16 by Frigg Speelman, Emma Scheltens, Hugo Loning +2 · 2 voices
Biochemistry, Genetics and Molecular Biology · Agricultural and Biological Sciences · Psychology · #Animal Vocal Communication and Behavior #Animal Behavior and Reproduction #Primate Behavior and Ecology
paper · pdf · doi:10.1111/eth.70004
ABSTRACT Duetting, a cooperative vocal behaviour performed by mated pairs, is a distinctive vocal behaviour among many species in specifically primates and birds. Yet, the exact features of duets that may make them a stronger territorial signal are still not well understood. One hypothesis is that the precision of duet coordination can indicate the quality of a pair bond or dedication of a pair, and thus the degree of threat posed to a rival pair. To address the implications of duetting precision in a territorial context, we here determined to what extent the antiphonal duetting behaviour in the chirruping wedgebill ( Psophodes cristatus ), a territorial, socially monogamous passerine, is affected by the precision of fine‐level duet coordination. We tested this with playback experiments where we broadcast coordinated and uncoordinated duets at mated pairs, predicting that pairs would exhibit stronger responses to coordinated duets than to uncoordinated ones and sing more coordinated after the simulated intrusion. We found that neither response intensity nor coordination of either sex differed in responses to playback of coordinated and uncoordinated duets. Since chirruping wedgebills did respond consistently to playback, we suggest that either (1) fine‐level coordination of duetting does not hold a function in joint resource defence in this species, (2) playback stimuli were too threatening for them to adjust their coordination on a level we could detect or (3) they do not discriminate between our coordinated and uncoordinated playback treatments. We highlight the notion that there may be variety in functions of duetting at play within and across avian species, and that different aspects of duets such as coordination and intensity may hold different functions.