Symmetry in models of natural selection

Author:

Allen Benjamin1ORCID

Affiliation:

1. Department of Mathematics, Emmanuel College, Boston, MA, USA

Abstract

Symmetry arguments are frequently used—often implicitly—in mathematical modelling of natural selection. Symmetry simplifies the analysis of models and reduces the number of distinct population states to be considered. Here, I introduce a formal definition of symmetry in mathematical models of natural selection. This definition applies to a broad class of models that satisfy a minimal set of assumptions, using a framework developed in previous works. In this framework, population structure is represented by a set of sites at which alleles can live, and transitions occur via replacement of some alleles by copies of others. A symmetry is defined as a permutation of sites that preserves probabilities of replacement and mutation. The symmetries of a given selection process form a group, which acts on population states in a way that preserves the Markov chain representing selection. Applying classical results on group actions, I formally characterize the use of symmetry to reduce the states of this Markov chain, and obtain bounds on the number of states in the reduced chain.

Funder

John Templeton Foundation

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

Reference70 articles.

1. Random processes in genetics

2. The genetical theory of natural selection.

3. EVOLUTION IN MENDELIAN POPULATIONS

4. A mathematical theory of natural and artificial selection. Part I;Haldane J;Trans. Cambridge Philos.,1924

5. SYSTEMS OF MATING. I. THE BIOMETRIC RELATIONS BETWEEN PARENT AND OFFSPRING

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