Abstract
Vocalizations are ancient behaviours that require the complex coordination of breath and display. Understanding how laryngeal anatomy shapes vocalization provides insights into this diversity, its mechanisms and their evolution. Rodents are ideal for exploring this variation because of their diverse mechanisms and vocal structures. Here, we describe the laryngeal morphology and sound production mechanisms underlying the vocalizations of Alston's singing mouse (Scotinomys teguina) and compare these results to those of other vocalizing mammals. We reconstructed the three-dimensional laryngeal morphology with micro-computed tomography, recorded laryngeal sound production using high-speed video and investigated frequency control using surgical ablations. We found that singing mice use a whistle mechanism that uniquely relies on the inflation of an enlarged air sac called the ventral pouch. Song frequency can be controlled by pouch volume, airflow and cricothyroid muscle action. Singing mouse laryngeal morphology and vocal mechanism are distinct from those of other Neotomids; singing mice appear to use inflation-mediated whistles for both distant and close exchanges. Inflatable air sacs have evolved repeatedly for sound modulation and filtering. Our results indicate a novel role for these structures in being required to generate sound. Together, our results expand on an emerging story of how biomechanic and morphological variation contributes to vocal diversity.
Author supplied keywords
Cite
CITATION STYLE
Smith, S. K., Håkansson, J., Frazel, P. W., Long, M., Elemans, C. P. H., & Phelps, S. M. (2026). Mechanisms and control of a novel vocalization: the singing mouse song is a whistle that depends on air sac inflation. Proceedings of the Royal Society B: Biological Sciences, 293(2070). https://doi.org/10.1098/rspb.2026.0153
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.