A maximum principle for the mutation-selection equilibrium of nucleotide sequences.
Garske, Tini;
Grimm, Uwe;
(2004)
A maximum principle for the mutation-selection equilibrium of nucleotide sequences.
Bulletin of mathematical biology, 66 (3).
pp. 397-421.
ISSN 0092-8240
DOI: https://doi.org/10.1016/j.bulm.2003.08.013
Permanent Identifier
Use this Digital Object Identifier when citing or linking to this resource.
We study the equilibrium behaviour of a deterministic four-state mutation-selection model as a model for the evolution of a population of nucleotide sequences in sequence space. The mutation model is the Kimura 3ST mutation scheme, and the selection scheme is assumed to be invariant under permutation of sites. Considering the evolution process both forward and backward in time, we use the ancestral distribution as the stationary state of the backward process to derive an expression for the mutational loss (as the difference between ancestral and population mean fitness), and we prove a maximum principle that determines the population mean fitness in mutation-selection balance.