Evolutionary rates and shape variation along the anuran vertebral column with attention to phylogeny, body size, and ecology
- PMID: 36117276
- DOI: 10.1111/evo.14614
Evolutionary rates and shape variation along the anuran vertebral column with attention to phylogeny, body size, and ecology
Abstract
The vertebral column is critical to a vertebrate species' flexibility and skeletal support, making vertebrae a clear target for selection. Anurans (frogs and toads) have a unique, truncated vertebral column that appears constrained to provide axial rigidity for efficient jumping. However, no study has examined how presacral vertebrae shape varies among anuran species at the macroevolutionary scale nor how intrinsic (developmental and phylogenetic) and extrinsic (ecological) factors may have influenced vertebrae shape evolution. We used microCT scans and phylogenetic comparative methods to examine the vertebrae of hundreds of anuran species that vary in body size as well as adult and larval ecology. We found variation in shape and evolutionary rates among anuran vertebrae, dispelling any notion that trunk vertebrae evolve uniformly. We discovered the highest evolutionary rates in the cervical vertebrae and in the more caudal trunk vertebrae. We found little evidence for selection pressures related to adult or larval ecology affecting vertebrae evolution, but we did find body size was highly associated with vertebrae shape and microhabitat (mainly burrowing) affected those allometric relationships. Our results provide an interesting comparison to vertebrae evolution in other clades and a jumping-off point for studies of anuran vertebrae evolution and development.
Keywords: Allometry; evolutionary rate; microhabitat; modularity; presacral vertebrae.
© 2022 The Authors. Evolution © 2022 The Society for the Study of Evolution.
References
REFERENCES
-
- Adams, D.C. (2014) A generalized K statistic for estimating phylogenetic signal from shape and other high-dimensional multivariate data. Syst. Biol., 63, 685-697.
-
- Adams, D.C. (2016) Evaluating modularity in morphometric data: challenges with the RV coefficient and a new test measure. Methods Ecol. Evol., 7, 565-572.
-
- Adams, D.C., Collyer, M.L., Kaliontzopoulou, A. & Balken, E.K. (2021) Geomorph: software for geometric morphometric analyses. Available via https://cran.r-project.org/package=geomorph.
-
- Alberch, P. & Gale, E.A. . (1985) A developmental analysis of an evolutionary trend: digital reduction in amphibians. Evolution, 39, 8-23.
-
- Analía Púgener, L. & Maglia, A.M. (1997) Osteology and skeletal development of Discoglossus sardus (Anura: Discoglossidae). J. Morphol., 233, 267-286.
Publication types
MeSH terms
Associated data
LinkOut - more resources
Full Text Sources