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Rapid and cost-effective polymorphism identification and genotyping using restriction site associated DNA (RAD) markers

Genome Research · 2006 · Vol. 17(2) · pp. 240–248
Michael R. MillerJoseph P. DunhamAngel AmoresWilliam A. CreskoEric A. Johnson

Abstract

Restriction site associated DNA (RAD) tags are a genome-wide representation of every site of a particular restriction enzyme by short DNA tags. Most organisms segregate large numbers of DNA sequence polymorphisms that disrupt restriction sites, which allows RAD tags to serve as genetic markers spread at a high density throughout the genome. Here, we demonstrate the applicability of RAD markers for both individual and bulk-segregant genotyping. First, we show that these markers can be identified and typed on pre-existing microarray formats. Second, we present a method that uses RAD marker DNA to rapidly produce a low-cost microarray genotyping resource that can be used to efficiently identify and type thousands of RAD markers. We demonstrate the utility of the former approach by using a tiling path array for the fruit fly to map a recombination breakpoint, and the latter approach by creating and using an enriched RAD marker array for the threespine stickleback. The high number of RAD markers enabled localization of a previously identified region, as well as a second region also associated with the lateral plate phenotype. Taken together, our results demonstrate that RAD markers, and the method to develop a RAD marker microarray resource, allow high-throughput, high-resolution genotyping in both model and nonmodel systems.

Genetic Mapping and Diversity in Plants and AnimalsPlant Disease Resistance and GeneticsGenetic diversity and population structureBiologyGenotypingGeneticsRestriction fragment length polymorphismIdentification (biology)Restriction siteDNAPolymorphism (computer science)GenotypeComputational biology

MeSH terms

AnimalsBase SequenceCost-Benefit AnalysisDNADrosophilaGenetic MarkersGenotypeGene LibraryOligonucleotide Array Sequence AnalysisPolymorphism, Single NucleotideSmegmamorpha

Funding

  • National Science Foundation
  • American Cancer Society
  • National Institutes of Health
  • National Center for Research Resources
Citations
1,056
FWCI
field-weighted impact
References
35
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Citations per year
References
AFLP: a new technique for DNA fingerprinting
Nucleic Acids Research · 1995 · 12,428 citations
The Evolutionary Biology of the Threespine Stickleback
Journal of Animal Ecology · 1995 · 752 citations
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