The ontogeny of asymmetry in echolocating whales

Author:

Lanzetti Agnese1ORCID,Coombs Ellen J.2ORCID,Portela Miguez Roberto1ORCID,Fernandez Vincent3ORCID,Goswami Anjali1ORCID

Affiliation:

1. Department of Life Sciences, Natural History Museum, Cromwell Road, Kensington, London SW7 5BD, UK

2. Department of Vertebrate Zoology, Smithsonian National Museum of Natural History, PO Box 37012, MRC 108, Washington, DC 20013-7012, USA

3. European Synchrotron Radiation Facility, 38000 Grenoble, France

Abstract

Extreme asymmetry of the skull is one of the most distinctive traits that characterizes toothed whales (Odontoceti, Cetacea). The origin and function of cranial asymmetry are connected to the evolution of echolocation, the ability to use high-frequency sounds to navigate the surrounding environment. Although this novel phenotype must arise through changes in cranial development, the ontogeny of cetacean asymmetry has never been investigated. Here we use three-dimensional geometric morphometrics to quantify the changes in degree of asymmetry and skull shape during prenatal and postnatal ontogeny for five genera spanning odontocete diversity (oceanic dolphins, porpoises and beluga). Asymmetry in early ontogeny starts low and tracks phylogenetic relatedness of taxa. Distantly related taxa that share aspects of their ecology overwrite these initial differences via heterochronic shifts, ultimately converging on comparable high levels of skull asymmetry. Porpoises maintain low levels of asymmetry into maturity and present a decelerated rate of growth, probably retained from the ancestral condition. Ancestral state reconstruction of allometric trajectories demonstrates that both paedomorphism and peramorphism contribute to cranial shape diversity across odontocetes. This study provides a striking example of how divergent developmental pathways can produce convergent ecological adaptations, even for some of the most unusual phenotypes exhibited among vertebrates.

Funder

H2020 Marie Skłodowska-Curie Actions

Doctoral Training Partnership

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference61 articles.

1. Norberg RA. 2002 Independent evolution of outer ear asymmetry among five owl lineages; morphology, function and selection. In Ecology and conservation of owls (eds I Newton, R Kavanagh, J Olsen, I Taylor), pp. 329-342. Clayton, Australia: CSIRO Publishing.

2. Wonky whales: the evolution of cranial asymmetry in cetaceans

3. The Origin of High-Frequency Hearing in Whales

4. Raising your voice: evolution of narrow-band high-frequency signals in toothed whales (Odontoceti)

5. Sensory adaptations reshaped intrinsic factors underlying morphological diversification in bats

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