Lessard S
J Theor Biol. 1986 Apr 7;119(3):329-44. doi: 10.1016/s0022-5193(86)80145-x.
The evolutionary dynamics in general two-sex two-phenotype frequency-dependent selection models are studied with respect to underlying multi-allele one-locus genetic systems. Two classes of equilibria come into play: genotypic equilibria, with equilibrium allelic frequencies independent of the phenotype, and phenotypic equilibria, which are characterized by equal mean phenotypic fitnesses. The exact conditions for genotypic equilibria to exist and be stable and for phenotypic equilibria to exist and be evolutionarily attractive are examined. Using adequate definitions of mean fitnesses in general contexts of frequency-dependent selection in dioecious populations, we show that two phenotypes, when they can coexist in the population, tend to balance their fitnesses as far as is allowed by the genetic system as more alleles responsible for phenotype determination are introduced into the population.
针对潜在的多等位基因单基因座遗传系统,研究了一般两性双表型频率依赖选择模型中的进化动力学。两类平衡点发挥作用:基因型平衡点,其平衡等位基因频率与表型无关;表型平衡点,其特征是平均表型适合度相等。研究了基因型平衡点存在且稳定以及表型平衡点存在且具有进化吸引力的确切条件。在雌雄异株种群频率依赖选择的一般背景下,通过对平均适合度的适当定义,我们表明,当两种表型能够在种群中共存时,随着更多负责表型决定的等位基因被引入种群,它们倾向于在遗传系统允许的范围内平衡其适合度。