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  5. Tempo and pattern of avian brain size evolution

Tempo and pattern of avian brain size evolution

Resource type
Journal article
Creator (person)
Ksepka, Daniel T
Balanoff, Amy M
Smith, N Adam
Bever, Gabriel S
Bhullar, Bhart-Anjan S
Bourdon, Estelle
Braun, Edward L
Burleigh, J Gordon
Clarke, Julia A
Colbert, Matthew W
Corfield, Jeremy R
Degrange, Federico J
De Pietri, Vanesa L
Early, Catherine M
Field, Daniel J
Gignac, Paul M
Gold, Maria Eugenia Leone
Kimball, Rebecca T
Kawabe, Soichiro
Lefebvre, Louis
Marugà¡n-Lobà³n, Jesàºs
Mongle, Carrie S
Morhardt, Ashley
Norell, Mark A
Ridgely, Ryan C
Rothman, Ryan S
Scofield, R Paul
Tambussi, Claudia P
Torres, Christopher R
van Tuinen, Marcel
Walsh, Stig A
Watanabe, Akinobu
Witmer, Lawrence M
Wright, Alexandra K
Zanno, Lindsay E
Jarvis, Erich D
Smaers, Jeroen B
Date published
June 8, 2020
Abstract
Relative brain sizes in birds can rival those of primates, but large-scale patterns and drivers of avian brain evolution remain elusive. Here, we explore the evolution of the fundamental brain-body scaling relationship across the origin and evolution of birds. Using a comprehensive dataset sampling> 2,000 modern birds, fossil birds, and theropod dinosaurs, we infer patterns of brain-body co-variation in deep time. Our study confirms that no significant increase in relative brain size accompanied the trend toward miniaturization or evolution of flight during the theropod-bird transition. Critically, however, theropods and basal birds show weaker integration between brain size and body size, allowing for rapid changes in the brain-body relationship that set the stage for dramatic shifts in early crown birds. We infer that major shifts occurred rapidly in the aftermath of the Cretaceous-Paleogene mass extinction within Neoaves, in which multiple clades achieved higher relative brain sizes because of a reduction in body size. Parrots and corvids achieved the largest brains observed in birds via markedly different patterns. Parrots primarily reduced their body size, whereas corvids increased body and brain size simultaneously (with rates of brain size evolution outpacing rates of body size evolution). Collectively, these patterns suggest that an early adaptive radiation in brain size laid the foundation for subsequent selection and stabilization.
Journal title
Current Biology
Volume
30
Issue
11
Article number
e3
Publisher
Elsevier
Place of publication
Amsterdam, Netherlands
eISSN
0960-9822
Date accepted
March 23, 2020
Official URL
https://doi.org/10.1016/j.cub.2020.03.060
Related URL
https://www.nms.ac.uk/collections-research/collections-departments/natural-sciences/palaeobiology/dr-stig-walsh/
Rights statement
In Copyright
DOI
10.1016/j.cub.2020.03.060
Keywords
allometry
endocast
encephalization
neurobiology
aves
paleontology
co-variation
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