Investigating the land-to-sea transition in carnivorans from the evolution of sacrum morphology in pinnipeds

Author:

Esteban Juan Miguel,Martín-Serra Alberto,Pérez-Ramos Alejandro,Rybczynski Natalia,Pastor Francisco J.,Figueirido Borja

Abstract

AbstractThe form and function of the sacrum are of great relevance to understand the evolution of locomotion in tetrapods because it is a key piece of the vertebrate skeleton. The sacrum connects the caudal and presacral regions of the vertebral column and the hindlimbs through the pelvis. Here, we investigate sacrum shape evolution in pinnipeds (Carnivora: Pinnipedia) in relation to terrestrial mammalian carnivorans (fissipeds), and we include crown and stem taxa to quantify the morphological changes they experience in relation to the aquatic environment they inhabit. We use 3D geometric morphometric methods to explore the morphological variability and disparity of the sacrum in a set of terrestrial and aquatic carnivoran species. Our results show that the morphology of the sacrum of each pinniped family is remarkably different and that these differences may be related to the aquatic mode of locomotion (pectoral or pelvic oscillation), the use of hindlimbs to support body weight on land (otariids in contrast with phocids), and the presence or absence of a functional tail. In addition, disparity-through-time analyses indicate that the sacrum of pinnipeds is less constrained than that of fissipeds, which suggests a gravitational origin of such constraints in fissipeds. In conclusion, our results give further support to the important role played by this skeletal structure in the locomotory adaptations of mammals.

Funder

Junta de Andalucía

Spanish Ministry of Science and Universities

Universidad de Málaga

Publisher

Springer Science and Business Media LLC

Subject

Ecology, Evolution, Behavior and Systematics

Reference81 articles.

1. Adams DC, Collyer M, Kaliontzopoulou A, Sherratt E (2017) Geomorph: software for geometric morphometric analyses. R package version 3.0.5. https://cran.rproject.org/package=geomorph.

2. Barnes LG (1989) A new enaliarctine pinniped from the Astoria Formation, Oregon, and a classification of the Otariidae (Mammalia: Carnivora). Los Angel Cty Mus Contr Sci 403:1–28.

3. Barnes LG, Raschke RE (1991) Gomphotaria pugnax, a new genus and species of late Miocene dusignathine ptariid pinniped (Mammalia: Carnivora) from California. Los Angel Cty Mus Contr Sci 426:1–16.

4. Baskin J (1998) Mustelidae. In: Janis CM, Scott KM, Jacobs LL (eds), Evolution of Tertiary Mammals of North America Vol. 1. Cambridge University Press, Cambridge, pp 152–173.

5. Bebej RM (2009) Swimming mode inferred from skeletal proportions in the fossil pinnipeds Enaliarctos and Allodesmus (Mammalia, Carnivora). J Mamm Evol 16:77–97. https://doi.org/10.1007/s10914-008-9099-1

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