English

Single--crossover recombination and ancestral recombination trees

Probability 2014-04-24 v2 Populations and Evolution

Abstract

We consider the Wright-Fisher model for a population of NN individuals, each identified with a sequence of a finite number of sites, and single-crossover recombination between them. We trace back the ancestry of single individuals from the present population. In the NN \to \infty limit without rescaling of parameters or time, this ancestral process is described by a random tree, whose branching events correspond to the splitting of the sequence due to recombination. With the help of a decomposition of the trees into subtrees, we calculate the probabilities of the topologies of the ancestral trees. At the same time, these probabilities lead to a semi-explicit solution of the deterministic single-crossover equation. The latter is a discrete-time dynamical system that emerges from the Wright-Fisher model via a law of large numbers and has been waiting for a solution for many decades.

Keywords

Cite

@article{arxiv.1206.0950,
  title  = {Single--crossover recombination and ancestral recombination trees},
  author = {Ellen Baake and Ute von Wangenheim},
  journal= {arXiv preprint arXiv:1206.0950},
  year   = {2014}
}

Comments

J. Math. Biol., in press. 26 pages, 8 figures

R2 v1 2026-06-21T21:14:31.688Z