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Male-male competition, female mate choice and their interaction: determining total sexual selection

期刊

JOURNAL OF EVOLUTIONARY BIOLOGY
卷 22, 期 1, 页码 13-26

出版社

WILEY
DOI: 10.1111/j.1420-9101.2008.01633.x

关键词

female mate choice; male-male competition; quantitative genetics; selection gradient; sexual selection

资金

  1. NERC
  2. Royal Society of London
  3. NERC [NE/D011337/1] Funding Source: UKRI
  4. Natural Environment Research Council [NE/B503709/2, NE/D011337/1] Funding Source: researchfish

向作者/读者索取更多资源

Empirical studies of sexual selection typically focus on one of the two mechanisms of sexual selection without integrating these into a description of total sexual selection, or study total sexual selection without quantifying the contributions of all of the mechanisms of sexual selection. However, this can provide an incomplete or misleading view of how sexually selected traits evolve if the mechanisms of sexual selection are opposing or differ in form. Here, we take a two-fold approach to advocate a direction for future studies of sexual selection. We first show how a quantitative partitioning and examination of sexual selection mechanisms can inform by identifying illustrative studies that describe both male-male competition and female mate choice acting on the same trait. In our sample, the most common trait where this occurred was body size, and selection was typically linear. We found that male-male competition and female mate choice can be reinforcing or opposing, although the former is most common in the literature. The mechanisms of sexual selection can occur simultaneously or sequentially, and we found they were more likely to be opposing when the mechanisms operated sequentially. The degree and timing that these mechanisms interact have important implications for the operation of sexual selection and needs to be considered in designing studies. Our examples highlight where empirical data are needed. We especially lack standardized measures of the form and strength of selection imposed by each mechanism of sexual selection and how they combine to determine total sexual selection. Secondly, using quantitative genetic principles, we outline how the selection imposed by individual mechanisms can be measured and combined to estimate the total strength and form of sexual selection. We discuss the evolutionary consequences of combining the mechanisms of sexual selection and interpreting total sexual selection. We suggest how this approach may result in empirical progress in the field of sexual selection.

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