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Recombination and linkage disequilibrium in Arabidopsis thaliana

Nature GeneticsPublished 5 August 2007
Sung Hoon Kim, Vincent Plagnol, Tina T. Hu, Christopher Toomajian, Richard M. Clark, Stephan Ossowski
Citations560
SJR quartileQ1
SJR score16.59
SNIP6.64

TL;DR

The genome-wide pattern of LD in a sample of 19 Arabidopsis thaliana accessions using 341,602 non-singleton SNPs is described, finding clear evidence of recombination hotspots, which seem to occur preferentially in intergenic regions.

Abstract

Linkage disequilibrium (LD) is a major aspect of the organization of genetic variation in natural populations. Here we describe the genome-wide pattern of LD in a sample of 19 Arabidopsis thaliana accessions using 341,602 non-singleton SNPs. LD decays within 10 kb on average, considerably faster than previously estimated. Tag SNP selection algorithms and 'hide-the-SNP' simulations suggest that genome-wide association mapping will require only 40%-50% of the observed SNPs, a reduction similar to estimates in a sample of African Americans. An Affymetrix genotyping array containing 250,000 SNPs has been designed based on these results; we demonstrate that it should have more than adequate coverage for genome-wide association mapping. The extent of LD is highly variable, and we find clear evidence of recombination hotspots, which seem to occur preferentially in intergenic regions. LD also reflects the action of selection, and it is more extensive between nonsynonymous polymorphisms than between synonymous polymorphisms.

Keywords

Biochemistry, Genetics and Molecular Biology