1
Return

Evolution of chondrichthyan jaw morphology, from ecological generalists to specialists

delete2025-12-01
delete0
delete
OA
AI
B
Benjamin W. Griffin *
J
Joseph N. Keating
P
Pablo S. Milla Carmona
Z
Zerina Johanson
R
Richard P. Dearden
P
Philip C. J. Donoghue
E
Emily J. Rayfield *
DOI:10.1017/pab.2025.10077delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Living chondrichthyans comprise only a fraction of their historical diversity represented in the fossil record, but together they provide insights into the evolution of this ancient clade. Using a theoretical morphology approach, we sought the evolutionary drivers of mandible morphology, a key factor in the feeding ecology of the clade, across their more than 400 million year evolutionary history. Using an empirical sample of 122 extant and 95 extinct species across 35 orders, we created a theoretical morphospace that encompasses, and expands beyond, sampled variation. We sampled morphologies from this theoretical morphospace and subjected them to biomechanical analysis of speed and strength, deriving landscapes of functional performance and optimality into which we projected a phylomorphospace. We examined how the optimality landscape has been navigated by chondrichthyan evolution and how it has been occupied by taxa characterized according to habitat and trophic level. The empirical chondrichthyan morphospace occupation was dispersed from the trade-off optimality peaks. Early chondrichthyans occupy morphospace characterized by narrow, curved jaws before expanding to more robust morphologies through time. This move toward robust morphologies does not follow the most optimal trade-off morphologies, instead avoiding areas that are least optimal. Deep-water species occupy the largest morphospace area, while higher trophic level species stay closer to the trade-off optimality peaks. Our study shows that chondrichthyans, rather than being living fossils, have explored increasingly specialized jaw morphologies, likely related to shifts in ecology such as increased numbers of durophagous taxa, as opposed to a more generalist optimization of component biomechanical constraints.
Keywords:
R PACKAGE
SHARKS
VERTEBRATES
MECHANISMS
COMPONENTS
RADIATION
INSIGHTS
BEHAVIOR
ANATOMY
HISTORY

Journal

Paleobiology cover
Paleobiology
IF:
2.7
Papers:
97
Citations:
3.9K

Organization

N
Natural History Museum London
Scholars:
2.2K
Papers: 2.5K
Citations: 4
Naturalis Biodiversity Center cover
Naturalis Biodiversity Center
Scholars:
938
Papers: 868
Citations: 2.0K
U
university of bristol
Scholars:
3.3K
Papers: 1.6K
Citations: 1
Cited Papers

Cited Papers

Citing Papers

Citing Papers