Time to fixation in the presence of recombination
Abstract
We study the evolutionary dynamics of a haploid population of infinite size recombining with a probability in a two locus model. Starting from a low fitness locus, the population is evolved under mutation, selection and recombination until a finite fraction of the population reaches the fittest locus. An analytical method is developed to calculate the fixation time to the fittest locus for various choices of epistasis. We find that (1) for negative epistasis, decreases slowly for small but decays fast at larger (2) for positive epistasis, increases linearly for small and mildly for large (3) for compensatory mutation, diverges as a power law with logarithmic corrections as the recombination fraction approaches a critical value. Our calculations are seen to be in good agreement with the exact numerical results.
Keywords
Cite
@article{arxiv.0905.3262,
title = {Time to fixation in the presence of recombination},
author = {Kavita Jain},
journal= {arXiv preprint arXiv:0905.3262},
year = {2010}
}
Comments
Corrected definition of linkage disequilibrium, new Section 5 added; Version to appear in Theo. Pop. Biol