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Modeling Linkage Disequilibrium and Identifying Recombination Hotspots Using Single-Nucleotide Polymorphism Data

Genetics · 2003 · Vol. 165(4) · pp. 2213–2233
Na LiMatthew Stephens

Abstract

We introduce a new statistical model for patterns of linkage disequilibrium (LD) among multiple SNPs in a population sample. The model overcomes limitations of existing approaches to understanding, summarizing, and interpreting LD by (i) relating patterns of LD directly to the underlying recombination process; (ii) considering all loci simultaneously, rather than pairwise; (iii) avoiding the assumption that LD necessarily has a "block-like" structure; and (iv) being computationally tractable for huge genomic regions (up to complete chromosomes). We examine in detail one natural application of the model: estimation of underlying recombination rates from population data. Using simulation, we show that in the case where recombination is assumed constant across the region of interest, recombination rate estimates based on our model are competitive with the very best of current available methods. More importantly, we demonstrate, on real and simulated data, the potential of the model to help identify and quantify fine-scale variation in recombination rate from population data. We also outline how the model could be useful in other contexts, such as in the development of more efficient haplotype-based methods for LD mapping.

Genetic Mapping and Diversity in Plants and AnimalsEvolution and Genetic DynamicsGenetic and phenotypic traits in livestockLinkage disequilibriumBiologyRecombinationPairwise comparisonGeneticsPopulationDisequilibriumLinkage (software)Recombination rateHaplotype

MeSH terms

ATP Binding Cassette Transporter, Subfamily B, Member 3AlgorithmsChromosome MappingComputer SimulationGenetics, PopulationHaplotypesHumansModels, GeneticPopulation DensityRecombination, GeneticLinkage DisequilibriumATP-Binding Cassette TransportersGenetic HeterogeneityPolymorphism, Single Nucleotide
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References
Linkage Disequilibrium in Humans: Models and Data
The American Journal of Human Genetics · 2001 · 1,311 citations
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