The origins of mammal growth patterns during the Jurassic mammalian radiation
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Resource type
Journal article
Creator (person)
Newham, Elis
Corfe, Ian J
Brewer, Philippa
Bright, Jen A
Fernandez, Vincent
Gostling, Neil J
Hoffmann, Simone
Jà¤ger, Kai R K
Kague, Erika
Lovric, Goran
Marone, Federica
Panciroli, Elsa
Schneider, Philipp
Schultz, Julia A
Suhonen, Heikki
Witchell, Alex
Gill, Pamela G
Martin, Thomas
Date published
August 9, 2024
Abstract
We use synchrotron x-ray tomography of annual growth increments in the dental cementum of mammaliaforms (stem and crown fossil mammals) from three faunas across the Jurassic to map the origin of patterns of mammalian growth patterns, which are intrinsically related to mammalian endothermy. Although all fossils studied exhibited slower growth rates, longer life spans, and delayed sexual maturity relative to comparably sized extant mammals, the earliest crown mammals developed significantly faster growth rates in early life that reduced at sexual maturity, compared to stem mammaliaforms. Estimation of basal metabolic rates (BMRs) suggests that some fossil crown mammals had BMRs approaching the lowest rates of extant mammals. We suggest that mammalian growth patterns first evolved during their mid-Jurassic adaptive radiation, although growth remained slower than in extant mammals.
X-ray imaging of dental growth rings reveals life history differences between living mammals and their Jurassic ancestors.
Journal title
Science Advances
Volume
10
Issue
52
Article number
eado4555
Publisher
American Association for the Advancement of Science (AAAS)
eISSN
2375-2548
Date accepted
June 28, 2024
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