The solitary wave of asexual evolution
- 13 January 2003
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 100 (2) , 587-592
- https://doi.org/10.1073/pnas.242719299
Abstract
Using a previously undescribed approach, we develop an analytic model that predicts whether an asexual population accumulates advantageous or deleterious mutations over time and the rate at which either process occurs. The model considers a large number of linked identical loci, or nucleotide sites; assumes that the selection coefficient per site is much less than the mutation rate per genome; and includes back and compensating mutations. Using analysis and Monte Carlo simulations, we demonstrate the accuracy of our results over almost the entire range of population sizes. Two limiting cases of our results, when either deleterious or advantageous mutations can be neglected, correspond to the Fisher-Muller effect and Muller's ratchet, respectively. By comparing predictions of our model (no recombination) to those of simple single-locus models (strong recombination), we show that the accumulation of advantageous mutations is slowed by linkage over a broad, finite range of population size. This supports the view of Fisher and Muller, who argued in the 1930s that progressive evolution of organisms is slowed because loci at which beneficial mutations can occur are often linked together on the same chromosome. These results follow from our main finding, that distribution of sequences over the mutation number evolves as a traveling wave whose speed and width depend on population size and other parameters. The model explains a logarithmic dependence of steady-state fitness on the population size reported recently for an RNA virus.Keywords
This publication has 60 references indexed in Scilit:
- Transition between Stochastic Evolution and Deterministic Evolution in the Presence of Selection: General Theory and Application to VirologyMicrobiology and Molecular Biology Reviews, 2001
- FIXATION OF NEW ALLELES AND THE EXTINCTION OF SMALL POPULATIONS: DRIFT LOAD, BENEFICIAL ALLELES, AND SEXUAL SELECTIONEvolution, 2000
- COMPENSATING FOR OUR LOAD OF MUTATIONS: FREEZING THE MELTDOWN OF SMALL POPULATIONSEvolution, 2000
- Multiple molecular pathways for fitness recovery of an RNA virus debilitated by operation of Muller’s ratchet 1 1Edited by J. KarnJournal of Molecular Biology, 1999
- RNA Virus Evolution via a Fitness-Space ModelPhysical Review Letters, 1996
- The constraints of finite size in asexual populations and the rate of the ratchetGenetics Research, 1995
- A general model for the evolution of recombinationGenetics Research, 1995
- Mutation accumulation in finite outbreeding and inbreeding populationsGenetics Research, 1993
- Mutation-selection balance and the evolutionary advantage of sex and recombinationGenetics Research, 1990
- What use is sex?Journal of Theoretical Biology, 1971