Prolonged morphological expansion of spiny-rayed fishes following the end-Cretaceous

Journal Publication ResearchOnline@JCU
Ghezelayagh, Ava;Harrington, Richard C.;Burress, Edward D.;Campbell, Matthew A.;Buckner, Janet C.;Chakrabarty, Prosanta;Glass, Jessica R.;McCraney, W. Tyler;Unmack, Peter J.;Thacker, Christine E.;Alfaro, Michael E.;Friedman, Sarah T.;Ludt, William B.;Cowman, Peter F.;Friedman, Matt;Price, Samantha A.;Dornburg, Alex;Faircloth, Brant C.;Wainwright, Peter C.;Near, Thomas J.
Abstract

Spiny-rayed fishes (Acanthomorpha) dominate modern marine habitats and account for more than a quarter of all living vertebrate species. Previous time-calibrated phylogenies and patterns from the fossil record explain this dominance by correlating the origin of major acanthomorph lineages with the Cretaceous–Palaeogene mass extinction. Here we infer a time-calibrated phylogeny using ultraconserved elements that samples 91.4% of all acanthomorph families and investigate patterns of body shape disparity. Our results show that acanthomorph lineages steadily accumulated throughout the Cenozoic and underwent a significant expansion of among-clade morphological disparity several million years after the end-Cretaceous. These acanthomorph lineages radiated into and diversified within distinct regions of morphospace that characterize iconic lineages, including fast-swimming open-ocean predators, laterally compressed reef fishes, bottom-dwelling flatfishes, seahorses and pufferfishes. The evolutionary success of spiny-rayed fishes is the culmination of multiple species-rich and phenotypically disparate lineages independently diversifying across the globe under a wide range of ecological conditions.

Journal

NATURE ECOLOGY & EVOLUTION

Publication Name

Nature Ecology & Evolution

Volume

6

ISBN/ISSN

2397-334X

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Pages Count

24

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Publisher

Springer

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N/A

DOI

10.1038/s41559-022-01801-3