Estimating Selection Coefficients in Spatially Structured Populations from Time Series Data of Allele Frequencies

Author:

Mathieson Iain1,McVean Gil12

Affiliation:

1. Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford OX3 7BN, United Kingdom

2. Department of Statistics, University of Oxford, Oxford OX1 3TG, United Kingdom

Abstract

Abstract Inferring the nature and magnitude of selection is an important problem in many biological contexts. Typically when estimating a selection coefficient for an allele, it is assumed that samples are drawn from a panmictic population and that selection acts uniformly across the population. However, these assumptions are rarely satisfied. Natural populations are almost always structured, and selective pressures are likely to act differentially. Inference about selection ought therefore to take account of structure. We do this by considering evolution in a simple lattice model of spatial population structure. We develop a hidden Markov model based maximum-likelihood approach for estimating the selection coefficient in a single population from time series data of allele frequencies. We then develop an approximate extension of this to the structured case to provide a joint estimate of migration rate and spatially varying selection coefficients. We illustrate our method using classical data sets of moth pigmentation morph frequencies, but it has wide applications in settings ranging from ecology to human evolution.

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference36 articles.

1. Monte Carlo evaluation of the likelihood for Ne from temporally spaced samples.;Anderson;Genetics,2000

2. Signatures of mutation and selection in the cancer genome.;Bignell;Nature,2010

3. An experimental study of the cline of industrial melanism in Biston betularia (L.) (Lepidoptera) between urban Liverpool and rural North Wales.;Bishop;J. Anim. Ecol.,1972

4. The response of two species of moths to industrialization in northwest England. I. Polymorphisms for melanism.;Bishop;Philos. T. R. Soc. B,1978

5. Estimation of 2Nes from temporal allele frequency data.;Bollback;Genetics,2008

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