Stochastic group selection model for the evolution of altruism
arXiv:adap-org/9901004 · doi:10.1007/s100510050626
Abstract
We study numerically and analytically a stochastic group selection model in which a population of asexually reproducing individuals, each of which can be either altruist or non-altruist, is subdivided into reproductively isolated groups (demes) of size . The cost associated with being altruistic is modelled by assigning the fitness , with , to the altruists and the fitness 1 to the non-altruists. In the case that the altruistic disadvantage is not too large, we show that the finite fluctuations are small and practically do not alter the deterministic results obtained for . However, for large these fluctuations greatly increase the instability of the altruistic demes to mutations. These results may be relevant to the dynamics of parasite-host systems and, in particular, to explain the importance of mutation in the evolution of parasite virulence.
12 pages, 7 figures
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