BRAINY · The role of behavioural flexibility on the generation and maintenance of diversity
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2020-04-01 → 2022-03-31
- EU contribution
- €212,934
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
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Results in brief
The role of behavioural flexibility on the generation and maintenance of diversity
Organism behaviour represents the key link between the morphology of a species and its ecological role in an ecosystem. Classic theory suggests that changes in behaviour could have an important role in generating ecological divergence although empirical evidence remains scarce. In this project, I use birds as a study model to explore the role of behavioural flexibility in the generation and maintenance of species diversity. First, we found that morphological and ecological specialization are not always linked, as different ecological niches imply different degrees of specialization on foraging techniques among physical states (i.e., air, water, ground/surface). Then, we show that specialization to these different tasks is linked to changes in relative brain size, with species developing multiple tasks having relatively larger brains. Finally, we use a global radiation of birds to show that larger relative brain size was associated with an increase in rates of speciation and phenotypic evolution. Overall, our results suggest that intelligence is tightly linked with a wider foraging niche and might explain the success of certain clades in the colonization and diversification in novel environments.
Data: CORDIS, © European Union
Project objective
Organism behaviour represents the key link between the morphology of a species and its ecological role (i.e. niche) within a community. Classic examples of species developing novel feeding behaviours to utilize previously unexploited niches (e.g. the use of sticks by Darwin’s ‘woodpecker’ finch on the Galapagos islands) suggest that variation in behavioural flexibility—and underlying differences in intelligence—may be an important diver of variation in rates of niche evolution and thus species diversification. However, because information on both species ecological niches and intelligence are generally lacking, the role of behavioural flexibility in structuring biodiversity remains unclear. Here I will use new global datasets on both brain size and foraging behaviour, available for 1000’s of avian species, alongside state of the art phylogenetic methods, to explore the role of behavioural flexibility in the generation and maintenance of species diversity. The analysis will establish the influence of intelligence on the link between morphology and the ecological niche and examine how differences in cognition impact different stages in the speciation cycle, from initiating population divergence, to driving morphological evolution, and finally in the attainment of coexistence and the completion of speciation. Through this I will develop an integrated understanding of the role of behavioural flexibility in the driving the spectacular radiation of life.
Original text from CORDIS.
Participants
- UNIVERSITY COLLEGE LONDON · LondonCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
