The genetical theory of kin selection

J Evol Biol. 2011 May;24(5):1020-43. doi: 10.1111/j.1420-9101.2011.02236.x. Epub 2011 Mar 4.

Abstract

Natural selection operates both directly, via the impact of a trait upon the individual's own fitness, and indirectly, via the impact of the trait upon the fitness of the individual's genetically related social partners. These effects are often framed in terms of Hamilton's rule, rb - c > 0, which provides the central result of social-evolution theory. However, a number of studies have questioned the generality of Hamilton's rule, suggesting that it requires restrictive assumptions. Here, we use Fisher's genetical paradigm to demonstrate the generality of Hamilton's rule and to clarify links between different studies. We show that confusion has arisen owing to researchers misidentifying model parameters with the b and c terms in Hamilton's rule, and misidentifying measures of genotypic similarity or genealogical relationship with the coefficient of genetic relatedness, r. More generally, we emphasize the need to distinguish between general kin-selection theory that forms the foundations of social evolution, and streamlined kin-selection methodology that is used to solve specific problems.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Altruism
  • Animals
  • Family
  • Least-Squares Analysis
  • Models, Genetic*
  • Selection, Genetic*