Projects per year
Abstract
Fisher's mechanism of sexual selection is a fundamental element of evolutionary theory. In it nonrandom mate choice causes a genetic covariance between a male trait and female preference for that trait and thereby generates a positive feedback process sustaining accelerated coevolution of the trait and preference. Numerous theoretical models of Fisher's mechanism have confirmed its mathematical underpinnings, yet biologists have often failed to find evidence for trait-preference genetic correlation in populations in which the mechanism was expected to function. We undertook a survey of the literature to conduct a formal meta-analysis probing the incidence and strength of trait-preference correlation among animal species. Our meta-analysis found significant positive genetic correlations in fewer than 20% of the species studied and an overall weighted correlation that is slightly positive. Importantly, a significant positive correlation was not found in any thorough study that included multiple subgroups. We discuss several ways in which the dynamic, multivariate nature of mate choice may reduce the trait-preference genetic correlation predicted by Fisher's mechanism. We then entertain the possibilities that Fisherian-like processes sometimes function without genetic correlation, and that mate choice may persist in a population as long as genetic correlation, and therefore Fisher's mechanism, occurs intermittently.
Original language | English |
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Pages (from-to) | 3524-3536 |
Number of pages | 13 |
Journal | Evolution |
Volume | 68 |
Issue number | 12 |
Early online date | 20 Nov 2014 |
DOIs | |
Publication status | Published - Dec 2014 |
Keywords
- Female choice
- Genetic covariance
- Meta-analysis
- Runaway selection
Fingerprint
Dive into the research topics of 'The dilemma of Fisherian sexual selection: mate choice for indirect benefits despite rarity and overall weakness of trait-preference genetic correlation'. Together they form a unique fingerprint.Projects
- 2 Finished
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Genomic Invasion: Genomic Invasion and the Role of Behaviour in Rapid Evolution.
Bailey, N. W. (PI)
1/10/14 → 4/12/20
Project: Standard
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Sexual Selection of Field Crickets: Social Learning and Sexual selection in field crickets
Bailey, N. W. (PI)
1/04/10 → 31/03/13
Project: Fellowship
Profiles
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Nathan William Bailey
- School of Biology - Professor of Evolutionary Biology
- Centre for Biological Diversity
- Institute of Behavioural and Neural Sciences
- St Andrews Bioinformatics Unit
Person: Academic