Theory of Natural Selection and Population Growth |
Contents
Introduction | 1 |
Species Interactions in Ecosystem Modeling | 12 |
Models of Natural Selection | 49 |
Copyright | |
9 other sections not shown
Common terms and phrases
adaptation allele frequency allelic fitnesses assume assumption asymptotic stability average fitness basic behavior bimodality biological calculate chapter coexistence competition consider corresponding curve defined depends describe distribution ecological ecosystem effect eigenvalues environment equations equilib equilibrium point evolution evolutionary exponential f₁ Fisher's theorem fitness functions fitness matrix formula frequency-dependent selection function F Gametic selection gene frequencies genotypes Ginzburg growth rate H(po heterosis heterozygote fitnesses heterozygote superiority homozygote fitnesses initial interactions ith population Karlin large number linear locus Lotka-Volterra models Lyapunov function mean multilocus mutation rate mutualistic N₁ natural selection necessary conditions neutral number of alleles number of loci obtain one-locus p₁ parameters population dynamics population genetics population growth predator problem quadratic form qualitative recombination result rium simplex species stability stable equilibrium stable polymorphism sufficient conditions symmetry theory tion trajectories triangle inequalities values variables vector W₁ W₁₁ zero zygotic



