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Reptile-like physiology in Early Jurassic stem-mammals

Authors :
Ian J. Corfe
Philippa Brewer
Berit Zeller-Plumhoff
Vincent Fernandez
Pamela G. Gill
Aki Kallonen
Philipp Schneider
Michael J. Benton
Paul Tafforeau
David Haberthür
Neil J. Gostling
Tuomas Kankaanpää
Heikki Suhonen
Kelly Richards
Kate Robson Brown
Elis Newham
Alexandra Pacureanu
Charles Navarro
Katherine Williams
Jukka Jernvall
Department of Geosciences and Geography
Biosciences
Jukka Jernvall / Principal Investigator
Institute of Biotechnology
Research Centre for Ecological Change
Department of Agricultural Sciences
Spatial Foodweb Ecology Group
Materials Physics
Department of Physics
Source :
Newham, Elis; Gill, Pamela G; Brewer, Philippa; Benton, Michael J; Fernandez, Vincent; Gostling, Neil J; Haberthür, David; Jernvall, Jukka; Kankaanpää, Tuomas; Kallonen, Aki; Navarro, Charles; Pacureanu, Alexandra; Richards, Kelly; Brown, Kate Robson; Schneider, Philipp; Suhonen, Heikki; Tafforeau, Paul; Williams, Katherine A; Zeller-Plumhoff, Berit and Corfe, Ian J (2020). Reptile-like physiology in Early Jurassic stem-mammals. Nature communications, 11(1), p. 5121. 10.1038/s41467-020-18898-4 , Newham, E, Gill, P G, Brewer, P, Benton, M J, Fernandez, V, Gostling, N J, Haberthür, D, Jernvall, J, Kankaanpää, T, Kallonen, A, Navarro, C, Pacureanu, A, Richards, K, Brown, K R, Schneider, P, Suhonen, H, Tafforeau, P, Williams, K A, Zeller-Plumhoff, B & Corfe, I J 2020, ' Reptile-like physiology in Early Jurassic stem-mammals ', Nature Communications, vol. 11, 5121 (2020) . https://doi.org/10.1038/s41467-020-18898-4, Nature Communications, Vol 11, Iss 1, Pp 1-13 (2020), Nature Communications, 'Nature Communications ', vol: 11, pages: 5121-1-5121-13 (2020)
Publication Year :
2020

Abstract

Despite considerable advances in knowledge of the anatomy, ecology and evolution of early mammals, far less is known about their physiology. Evidence is contradictory concerning the timing and fossil groups in which mammalian endothermy arose. To determine the state of metabolic evolution in two of the earliest stem-mammals, the Early Jurassic Morganucodon and Kuehneotherium, we use separate proxies for basal and maximum metabolic rate. Here we report, using synchrotron X-ray tomographic imaging of incremental tooth cementum, that they had maximum lifespans considerably longer than comparably sized living mammals, but similar to those of reptiles, and so they likely had reptilian-level basal metabolic rates. Measurements of femoral nutrient foramina show Morganucodon had blood flow rates intermediate between living mammals and reptiles, suggesting maximum metabolic rates increased evolutionarily before basal metabolic rates. Stem mammals lacked the elevated endothermic metabolism of living mammals, highlighting the mosaic nature of mammalian physiological evolution.<br />Modern mammals are endothermic, but it has not been clear when this type of metabolism evolved. Here, Newham et al. analyse tooth and bone structure in Early Jurassic stem-mammal fossils to estimate lifespan and blood flow rates, which inform about basal and maximum metabolic rates, respectively, and show these stem-mammals had metabolic rates closer to modern ectothermic reptiles than to endothermic mammals.

Details

Language :
English
ISSN :
20411723
Database :
OpenAIRE
Journal :
Newham, Elis; Gill, Pamela G; Brewer, Philippa; Benton, Michael J; Fernandez, Vincent; Gostling, Neil J; Haberth&#252;r, David; Jernvall, Jukka; Kankaanp&#228;&#228;, Tuomas; Kallonen, Aki; Navarro, Charles; Pacureanu, Alexandra; Richards, Kelly; Brown, Kate Robson; Schneider, Philipp; Suhonen, Heikki; Tafforeau, Paul; Williams, Katherine A; Zeller-Plumhoff, Berit and Corfe, Ian J (2020). Reptile-like physiology in Early Jurassic stem-mammals. Nature communications, 11(1), p. 5121. 10.1038/s41467-020-18898-4 <http://dx.doi.org/10.1038/s41467-020-18898-4>, Newham, E, Gill, P G, Brewer, P, Benton, M J, Fernandez, V, Gostling, N J, Haberth&#252;r, D, Jernvall, J, Kankaanp&#228;&#228;, T, Kallonen, A, Navarro, C, Pacureanu, A, Richards, K, Brown, K R, Schneider, P, Suhonen, H, Tafforeau, P, Williams, K A, Zeller-Plumhoff, B &amp; Corfe, I J 2020, &#39; Reptile-like physiology in Early Jurassic stem-mammals &#39;, Nature Communications, vol. 11, 5121 (2020) . https://doi.org/10.1038/s41467-020-18898-4, Nature Communications, Vol 11, Iss 1, Pp 1-13 (2020), Nature Communications, &#39;Nature Communications &#39;, vol: 11, pages: 5121-1-5121-13 (2020)
Accession number :
edsair.doi.dedup.....65a5f10693296827b5703a34fcd3f969