English

Ancestral reproductive bias in branching processes

Populations and Evolution 2022-05-30 v1 Probability

Abstract

Consider a branching process with a homogeneous reproduction law. Sampling a single cell uniformly from the population at a time T>0T > 0 and looking along the sampled cell's ancestral lineage, we find that the reproduction law is heterogeneous - the expected reproductive output of ancestral cells on the lineage from time 00 to time TT continuously increases. This `inspection paradox' is due to sampling bias, that cells with a larger number of offspring are more likely to have one of their descendants sampled by virtue of their prolificity, and the bias's strength grows with the random population size and/or the sampling time TT. Our main result explicitly characterises the evolution of reproduction rates and sizes along the sampled ancestral lineage as a mixture of Poisson processes, which simplifies in special cases. The ancestral bias helps to explain recently observed variation in mutation rates along lineages of the developing human embryo.

Keywords

Cite

@article{arxiv.2205.13875,
  title  = {Ancestral reproductive bias in branching processes},
  author = {David Cheek and Samuel G. G. Johnston},
  journal= {arXiv preprint arXiv:2205.13875},
  year   = {2022}
}

Comments

18 pages, 4 figures