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PMID: 11901136 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A coalescent-based method for detecting and estimating recombination from gene sequences.

Genetics ·Vol. 160 ·No. 3 ·2002-03-00 ·Pages 1231-41

McVean G, Awadalla P, Fearnhead P

Abstract

Determining the amount of recombination in the genealogical history of a sample of genes is important to both evolutionary biology and medical population genetics. However, recurrent mutation can produce patterns of genetic diversity similar to those generated by recombination and can bias estimates of the population recombination rate. Hudson 2001 has suggested an approximate-likelihood method based on coalescent theory to estimate the population recombination rate, 4N(e)r, under an infinite-sites model of sequence evolution. Here we extend the method to the estimation of the recombination rate in genomes, such as those of many viruses and bacteria, where the rate of recurrent mutation is high. In addition, we develop a powerful permutation-based method for detecting recombination that is both more powerful than other permutation-based methods and robust to misspecification of the model of sequence evolution. We apply the method to sequence data from viruses, bacteria, and human mitochondrial DNA. The extremely high level of recombination detected in both HIV1 and HIV2 sequences demonstrates that recombination cannot be ignored in the analysis of viral population genetic data.

MeSH Terms
Animals Evolution, Molecular Humans Likelihood Functions Models, Genetic Mutation Recombination, Genetic Sequence Analysis, DNA/methods
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
McVean Gil
Department of Statistics, University of Oxford, Oxford OX1 3TG, United Kingdom. [email protected]
Awadalla Philip
Fearnhead Paul
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Article Info
Journal
Genetics
Abbr.
Genetics
ISSN
0016-6731
Published
2002-03-00
Pages
1231-41
Language
English
Region
United States
NLM ID
0374636
PMCID
PMC1462015
Subset
IM
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