Sexual selection on male body size, genital length and heterozygosity: Consistency across habitats and social settings
Autor: | Michael D. Jennions, Andrew T. Kahn, Jonathan M. Henshaw, Megan L. Head, J. Scott Keogh |
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Rok vydání: | 2017 |
Předmět: |
Male
0106 biological sciences 0301 basic medicine Genitalia Male 010603 evolutionary biology 01 natural sciences Gambusia Cyprinodontiformes 03 medical and health sciences Animals Body Size Sex Ratio Operational sex ratio Ecosystem Ecology Evolution Behavior and Systematics Selection (genetic algorithm) biology Reproductive success Directional selection Ecology Reproduction Mating Preference Animal biology.organism_classification 030104 developmental biology Evolutionary biology Sexual selection Animal Science and Zoology Mosquitofish Sex ratio |
Zdroj: | Journal of Animal Ecology. 86:1458-1468 |
ISSN: | 1365-2656 0021-8790 |
DOI: | 10.1111/1365-2656.12742 |
Popis: | Spatial and temporal variation in environmental factors and the social setting can help to maintain genetic variation in sexually selected traits if it affects the strength of directional selection. A key social parameter which affects the intensity of, and sometimes predicts the response to, mating competition is the operational sex ratio (OSR; ratio of receptive males to females). How the OSR affects selection for specific male traits is poorly understood. It is also unclear how sexual selection is affected by interactions between the OSR and environmental factors, such as habitat complexity, that alter key male-female interactions such as mate encounter rates. Here, we experimentally manipulated the OSR and habitat complexity and quantified sexual selection on male mosquitofish (Gambusia holbrooki) by directly measuring male reproductive success (i.e. paternity). We show that despite a more equitable sharing of paternity (i.e. higher levels of multiple paternity) under a male-biased OSR, selection on focal male traits was unaffected by the OSR or habitat complexity. Instead, sexual selection consistently, and significantly, favoured smaller bodied males, males with higher genome wide heterozygosity (based on >3,000 SNP markers) and males with a relatively long gonopodium (intromittent organ). Our results show that sexual selection on male body size, relative genital size and heterozygosity in this system is consistent across environments that vary in ecological parameters that are expected to influence mate encounter rates. |
Databáze: | OpenAIRE |
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