The vocal apparatus: An understudied tool to reconstruct the evolutionary history of echolocation in bats?

Author:

Brualla Nicolas L. M.ORCID,Wilson Laura A. B.ORCID,Doube MichaelORCID,Carter Richard T.ORCID,McElligott Alan G.ORCID,Koyabu DaisukeORCID

Abstract

AbstractLaryngeal echolocation in bats could have evolved following two scenarios: a single origin from a common ancestor or an independent acquisition inside the two clades Yinpterochiroptera and Yangochiroptera. Later, some members of Yinpterochiroptera possibly lost their ability to echolocate. In bats, the larynx produces vocalizations for communication and, in most species, for echolocation. Here, we describe how comparative chiropteran laryngeal morphology is a novel area of research that could improve the understanding of echolocation and may help resolve the evolutionary history of bats. This review provides morphological descriptions and comparisons of the bat larynx and bioacoustics interpretations. We discuss the importance of understanding: (1) laryngeal sound production so it may be linked with the evolution of the chiropteran auditory system; and (2) the evolution of laryngeal morphology to understand the ecological and behavioural aspects of bat biology. We find that a strong phylogenetic signal is potentially the main source explaining macroevolutionary variation in laryngeal form among bats. We predict that the three parameters of sound production in echolocation (frequency, intensity, and rate of calls) are independently modulated by different laryngeal components, but this hypothesis remains understudied in terms of species diversity.

Funder

City University of Hong Kong Start-up Grant

Japan Society for the Promotion of Science

Japan Science and Technology Agency

Australian Research Council

Publisher

Springer Science and Business Media LLC

Subject

Ecology, Evolution, Behavior and Systematics

Reference132 articles.

1. Alli O, Berzofsky C, Sharma S, Pitman MJ (2013) Development of the rat larynx: a histological study. Laryngoscope 123(12):3093–3098. https://doi.org/10.1002/lary.24145

2. Baron G, Stephan H, Frahm HD (1996) Comparative Neurobiology in Chiroptera (Vol. 3): Brain Characteristics in Functional Systems, Ecoethological Adaption, Adaptive Radiation and Evolution, 1st ed. Birkhäuser, Basel, Switzerland

3. Berke GS, Long JL (2010) Functions of the larynx and production of sounds. In: Brudzynski SM (ed) Handbook of Behavioral Neuroscience. Elsevier, London, UK, pp 419–426

4. Bogdanowicz W, Fenton MB, Daleszczyk K (1999) The relationships between echolocation calls, morphology and diet in insectivorous bats. J Zool 247(3):381–393. https://doi.org/10.1111/j.1469-7998.1999.tb01001.x

5. Borgard HL, Baab K, Pasch B, Riede T (2020) The shape of sound: a geometric morphometrics approach to laryngeal functional morphology. J Mamm Evol 27(3):577–590. https://doi.org/10.1007/s10914-019-09466-9

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