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dc.contributor.authorCooney, F
dc.date.accessioned2024-01-02T08:23:31Z
dc.date.issued2023-12-18
dc.date.updated2023-12-27T14:29:00Z
dc.description.abstractThe inherent cognitive challenges faced by animals that live in cooperative groups have led to several hypotheses about how sociality may influence brain evolution and vice versa. The social brain hypothesis posits that the cognitive demands of living in cooperative societies have had a causal effect on the evolution of large and/or increasingly elaborate brains in certain animal groups. Evidence exists both for and against the social brain hypothesis as a valid mechanism in taxa that have been studied to date, including primates, ungulates, mammalian carnivores, birds, fish and even the tiny brains of social insects, historically thought to be lacking the capacity for higher level information processing. In many cooperative societies social living also necessitates specific cognitive abilities that influence behaviour, such as assessment of another’s physical condition in the initial formation of dominance relationships, and associative memory and recognition in established groups. In this thesis I present studies on both solitary and primitively eusocial wasps in which I investigate the relationship between sociality or cognitively demanding life histories and cognitive evolution. Firstly, in chapter 2 I investigate the hypothesis that a more cognitively demanding breeding strategy seen in several wasp species in the genus Ammophila leads to enlarged brain mushroom body structures relative to species which practice a simpler strategy, while also developing methods for using novel imaging techniques on such small brains. In chapter 3 I present evidence which directly contradicts the social brain hypothesis by showing that solitary foundresses in a wild population of the paper wasp Polistes dominulus display larger brains, larger mushroom body substructures and larger antennal lobes than social foundresses. In chapter 4 I show that subordinate P. dominulus females who are promoted to the dominant position become temporarily hyper aggressive towards lower ranking nestmates, and in chapter 5 I present evidence which rejects the hypothesis that Spanish P. dominulus populations use conspicuous facial markings as signals of physical quality. Each of these results are discussed in the context of the evolution of cognitive mechanisms for mediating behaviour in social insects. Overall, these findings suggest that social living does not present particularly high cognitive demands on insect brains in terms of production of significant amounts of neural tissues, but certain necessary abilities do likely place lower demands which are beyond the reach of the methods used in this work.en_GB
dc.description.sponsorshipNERC
dc.identifier.urihttp://hdl.handle.net/10871/134855
dc.publisherUniversity of Exeteren_GB
dc.rights.embargoreasonUnder embargo until 30/6/25en_GB
dc.subjectcognitionen_GB
dc.subjectcognitiveen_GB
dc.subjectevolutionen_GB
dc.subjectsocialen_GB
dc.subjectinsecten_GB
dc.subjectinsectsen_GB
dc.subjectwaspsen_GB
dc.subjectpolistesen_GB
dc.subjectdominulusen_GB
dc.subjectdominulaen_GB
dc.subjectbrainen_GB
dc.subjectbehaviouren_GB
dc.subjectbehavioren_GB
dc.subjectbehaviouralen_GB
dc.subjectbehavioralen_GB
dc.subjectecologyen_GB
dc.subjectevolutionaryen_GB
dc.subjectcooperationen_GB
dc.subjectcooperativeen_GB
dc.titleSocial Brains and Behaviour in cooperative insect societiesen_GB
dc.typeThesis or dissertationen_GB
dc.date.available2024-01-02T08:23:31Z
dc.contributor.advisorCant, Michael
dc.contributor.advisorCurrie, Thomas
dc.publisher.departmentFaculty of Environment, Science and Economy
dc.rights.urihttp://www.rioxx.net/licenses/all-rights-reserveden_GB
dc.type.degreetitlePhD in Biological Sciences
dc.type.qualificationlevelDoctoral
dc.type.qualificationnameDoctoral Thesis
rioxxterms.versionNAen_GB
rioxxterms.licenseref.startdate2023-12-18
rioxxterms.typeThesisen_GB


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