bioRxiv · 10.1101/2020.02.18.953836
Floating frogs sound larger: environmental constraints on signal production drives call frequency changes
Abstract
In animal communication, receivers benefit from signals providing reliable information on signallers traits of interest. Individuals involved in conflicts, such as competition between rivals, should pay particular attention to cues that are unfakeable by the senders due to the intrinsic properties of the production process. In bioacoustics, the best-known example of such index signals is the relationship between a senders body size and the dominant frequency of their vocalizations. Dominant frequency may however not only depend on an animals morphology but also on the interaction between the sound production system and its immediate environment. Here, we experimentally altered the environment surrounding calling frogs and assessed its impact on the signal produced. More specifically, we altered water level, which forced frogs to float on the surface and tested how this manipulation affected the shuttling of air between the lungs and the vocal sac, and how this in turn impacted the calls dominant frequency. Our results show that frogs that are floating are able to fully inflate their lungs and vocal sacs, and that the associated change in airflow or air pressure is correlated with a decrease of call dominant frequency.
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Goutte, S., Munoz, M. I., Ryan, M. J., Halfwerk, W.. 2020-02-19. Floating frogs sound larger: environmental constraints on signal production drives call frequency changes. https://doi.org/10.1101/2020.02.18.953836
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