Both social and ecological factors predict ungulate brain size
- 1 November 2005
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 273 (1583) , 207-215
- https://doi.org/10.1098/rspb.2005.3283
Abstract
Among mammals, the members of some Orders have relatively large brains. Alternative explanations for this have emphasized either social or ecological selection pressures favouring greater information-processing capacities, including large group size, greater foraging efficiency, higher innovation rates, better invasion success and complex problem solving. However, the focal taxa for these analyses (primates, carnivores and birds) often show both varied ecological competence and social complexity. Here, we focus on the specific relationship between social complexity and brain size in ungulates, a group with relatively simple patterns of resource use, but extremely varied social behaviours. The statistical approach we used, phylogenetic generalized least squares, showed that relative brain size was independently associated with sociality and social complexity as well as with habitat use, while relative neocortex size is associated with social but not ecological factors. A simple index of sociality was a better predictor of both total brain and neocortex size than group size, which may indicate that the cognitive demands of sociality depend on the nature of social relationships as well as the total number of individuals in a group.Keywords
This publication has 44 references indexed in Scilit:
- Cerebralisation, Hirnevolution und domestikationsbedingte Hirngrößenänderungen innerhalb der Ordnung Perissodactyla Owen, 1848 und ein Vergleich mit der Ordnung Artiodactyla Owen, 1848Journal of Zoological Systematics and Evolutionary Research, 2009
- Brain Architecture and Social Complexity in Modern and Ancient BirdsBrain, Behavior and Evolution, 2004
- COMPARATIVE METHODS FOR THE ANALYSIS OF CONTINUOUS VARIABLES: GEOMETRIC INTERPRETATIONSEvolution, 2001
- Environmental change and rates of evolution: the phylogeographic pattern within the hartebeest complex as related to climatic variationProceedings Of The Royal Society B-Biological Sciences, 2001
- Using the Past to Predict the Present: Confidence Intervals for Regression Equations in Phylogenetic Comparative MethodsThe American Naturalist, 2000
- Primate brain evolution : genetic and functional considerationsProceedings Of The Royal Society B-Biological Sciences, 1996
- Neocortex size and behavioural ecology in primatesProceedings Of The Royal Society B-Biological Sciences, 1996
- Neocortex size as a constraint on group size in primatesJournal of Human Evolution, 1992
- Linear relations in biomechanics: the statistics of scaling functionsJournal of Zoology, 1985
- Anatomical Differences between the Neocortex of Man and Other PrimatesBrain, Behavior and Evolution, 1973