Lonely hearts or sex in the city? Density-dependent effects in mating systems
Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy, leading to sex role differentiation, and the frequency dependence of reproductive success that tends to equalize primary sex ratios. However, being explicit about the numbers of...
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Published in: | Philosophical transactions of the Royal Society of London. Series B. Biological sciences Vol. 361; no. 1466; pp. 319 - 334 |
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Main Authors: | , |
Format: | Journal Article |
Language: | English |
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London
The Royal Society
28-02-2006
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Abstract | Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy, leading to sex role differentiation, and the frequency dependence of reproductive success that tends to equalize primary sex ratios. However, being explicit about the numbers of potential mates is not typical to most evolutionary theory of sexual selection. Here, we argue that this may prevent us from finding the appropriate ecological equilibria that determine the evolutionary endpoints of selection. We review both theoretical and empirical advances on how population density may influence aspects of mating systems such as intrasexual competition, female choice or resistance, and parental care. Density can have strong effects on selective pressures, whether or not there is phenotypic plasticity in individual strategies with respect to density. Mating skew may either increase or decrease with density, which may be aided or counteracted by changes in female behaviour. Switchpoints between alternative mating strategies can be density dependent, and mate encounter rates may influence mate choice (including mutual mate choice), multiple mating, female resistance to male mating attempts, mate searching, mate guarding, parental care, and the probability of divorce. Considering density-dependent selection may be essential for understanding how populations can persist at all despite sexual conflict, but simple models seem to fail to predict the diversity of observed responses in nature. This highlights the importance of considering the interaction between mating systems and population dynamics, and we strongly encourage further work in this area. |
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AbstractList | Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy, leading to sex role differentiation, and the frequency dependence of reproductive success that tends to equalize primary sex ratios. However, being explicit about the numbers of potential mates is not typical to most evolutionary theory of sexual selection. Here, we argue that this may prevent us from finding the appropriate ecological equilibria that determine the evolutionary endpoints of selection. We review both theoretical and empirical advances on how population density may influence aspects of mating systems such as intrasexual competition, female choice or resistance, and parental care. Density can have strong effects on selective pressures, whether or not there is phenotypic plasticity in individual strategies with respect to density. Mating skew may either increase or decrease with density, which may be aided or counteracted by changes in female behaviour. Switchpoints between alternative mating strategies can be density dependent, and mate encounter rates may influence mate choice (including mutual mate choice), multiple mating, female resistance to male mating attempts, mate searching, mate guarding, parental care, and the probability of divorce. Considering density-dependent selection may be essential for understanding how populations can persist at all despite sexual conflict, but simple models seem to fail to predict the diversity of observed responses in nature. This highlights the importance of considering the interaction between mating systems and population dynamics, and we strongly encourage further work in this area. Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy, leading to sex role differentiation, and the frequency dependence of reproductive success that tends to equalize primary sex ratios. However, being explicit about the numbers of potential mates is not typical to most evolutionary theory of sexual selection. Here, we argue that this may prevent us from finding the appropriate ecological equilibria that determine the evolutionary endpoints of selection. We review both theoretical and empirical advances on how population density may influence aspects of mating systems such as intrasexual competition, female choice or resistance, and parental care. Density can have strong effects on selective pressures, whether or not there is phenotypic plasticity in individual strategies with respect to density. Mating skew may either increase or decrease with density, which may be aided or counteracted by changes in female behaviour. Switchpoints between alternative mating strategies can be density dependent, and mate encounter rates may influence mate choice (including mutual mate choice), multiple mating, female resistance to male mating attempts, mate searching, mate guarding, parental care, and the probability of divorce. Considering density-dependent selection may be essential for understanding how populations can persist at all despite sexual conflict, but simple models seem to fail to predict the diversity of observed responses in nature. This highlights the importance of considering the interaction between mating systems and population dynamics, and we strongly encourage further work in this area. |
Author | Kokko, Hanna Rankin, Daniel J |
AuthorAffiliation | Laboratory of Ecological and Evolutionary Dynamics, Department of Biological and Environmental Science, University of Helsinki PO Box 65 (Viikinkaari 1), 00014 Helsinki, Finland |
AuthorAffiliation_xml | – name: Laboratory of Ecological and Evolutionary Dynamics, Department of Biological and Environmental Science, University of Helsinki PO Box 65 (Viikinkaari 1), 00014 Helsinki, Finland |
Author_xml | – sequence: 1 givenname: Hanna surname: Kokko fullname: Kokko, Hanna email: hanna.kokko@helsinki.fi organization: E-mail: hanna.kokko@helsinki.fi – sequence: 2 givenname: Daniel J surname: Rankin fullname: Rankin, Daniel J organization: Laboratory of Ecological and Evolutionary Dynamics, Department of Biological and Environmental Science, University of Helsinki PO Box 65 (Viikinkaari 1), 00014 Helsinki, Finland |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/16612890$$D View this record in MEDLINE/PubMed |
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Snippet | Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy,
leading to sex role differentiation,... Two very basic ideas in sexual selection are heavily influenced by numbers of potential mates: the evolution of anisogamy, leading to sex role differentiation,... |
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SubjectTerms | Allee Effect Animals Anura - genetics Anura - physiology Computer Simulation Ecological competition Evolution Extinction Female Female animals Male Male animals Mating behavior Mating systems Models, Biological Phenotypic Plasticity Population Density Population Regulation Reproductive success Selection, Genetic Sex ratio Sexual Behavior, Animal - physiology Sexual Selection |
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Title | Lonely hearts or sex in the city? Density-dependent effects in mating systems |
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