English

Sexual replication in the quasispecies model

Populations and Evolution 2007-05-23 v2 Cell Behavior

Abstract

This paper develops a simplified model for sexual replication within the quasispecies formalism. We assume that the genomes of the replicating organisms are two-chromosomed and diploid, and that the fitness is determined by the number of chromosomes that are identical to a given master sequence. We also assume that there is a cost to sexual replication, given by a characteristic time τseek \tau_{seek} during which haploid cells seek out a mate with which to recombine. If the mating strategy is such that only viable haploids can mate, then when τseek=0 \tau_{seek} = 0 , it is possible to show that sexual replication will always outcompete asexual replication. However, as τseek \tau_{seek} increases, sexual replication only becomes advantageous at progressively higher mutation rates. Once the time cost for sex reaches a critical threshold, the selective advantage for sexual replication disappears entirely. The results of this paper suggest that sexual replication is not advantageous in small populations per se, but rather in populations with low replication rates. In this regime, the cost for sex is sufficiently low that the selective advantage obtained through recombination leads to the dominance of the strategy. In fact, at a given replication rate and for a fixed environment volume, sexual replication is selected for in high populations because of the reduced time spent finding a reproductive partner.

Keywords

Cite

@article{arxiv.q-bio/0509041,
  title  = {Sexual replication in the quasispecies model},
  author = {Emmanuel Tannenbaum},
  journal= {arXiv preprint arXiv:q-bio/0509041},
  year   = {2007}
}

Comments

7 pages, 4 figures, submitted to The Journal of Theoretical Biology

R2 v1 2026-07-22T19:24:42.715Z