A High Density Integrated Genetic Linkage Map of Soybean and the Development of a 1536 Universal Soy Linkage Panel for Quantitative Trait Locus Mapping
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Open Access
- 1 May 2010
- journal article
- research article
- Published by Wiley in Crop Science
- Vol. 50 (3) , 960-968
- https://doi.org/10.2135/cropsci2009.06.0360
Abstract
Single nucleotide polymorphisms (SNPs) are the marker of choice for many researchers due to their abundance and the high‐throughput methods available for their multiplex analysis. Only recently have SNP markers been available to researchers in soybean [Glycine max (L.) Merr.] with the release of the third version of the consensus genetic linkage map that added 1141 SNP markers to the map. Our objectives were to add 2500 additional SNP markers to the soybean integrated map and select a set of 1536 SNPs to create a universal linkage panel for high‐throughput soybean quantitative trait locus (QTL) mapping. The GoldenGate assay is one high‐throughput analysis method capable of genotyping 1536 SNPs in 192 DNA samples over a 3‐d period. We designed GoldenGate assays for 3456 SNPs (2956 new plus 500 previously mapped) which were used to screen three recombinant inbred line populations and diverse germplasm. A total of 3000 workable assays were obtained which added about 2500 new SNP markers to create a fourth version of the soybean integrated linkage map. To create a “Universal Soy Linkage Panel” (USLP 1.0) of 1536 SNP loci, SNPs were selected based on even distribution throughout each of the 20 consensus linkage groups and to have a broad range of allele frequencies in diverse germplasm. The 1536 USLP 1.0 will be able to quickly create a comprehensive genetic map in most QTL mapping populations and thus will serve as a useful tool for high‐throughput QTL mapping.Keywords
Funding Information
- United Soybean Board
This publication has 23 references indexed in Scilit:
- Genome sequence of the palaeopolyploid soybeanNature, 2010
- Bulked Segregant Analysis Using the GoldenGate Assay to Locate the Rpp3 Locus that Confers Resistance to Soybean Rust in SoybeanCrop Science, 2009
- Re-annotation of the physical map of Glycine max for polyploid-like regions by BAC end sequence driven whole genome shotgun read assemblyBMC Genomics, 2008
- High-throughput genotyping with the GoldenGate assay in the complex genome of soybeanTheoretical and Applied Genetics, 2008
- A Soybean Transcript Map: Gene Distribution, Haplotype and Single-Nucleotide Polymorphism AnalysisGenetics, 2007
- Impacts of genetic bottlenecks on soybean genome diversityProceedings of the National Academy of Sciences, 2006
- Highly parallel genomic assaysNature Reviews Genetics, 2006
- Genetic Mapping of Agronomic Traits Using Recombinant Inbred Lines of SoybeanCrop Science, 1996
- Genetic Diversity Patterns in North American Public Soybean Cultivars based on Coefficient of ParentageCrop Science, 1996
- Agronomic Performance of Soybean Recombinant Inbreds in Northern USA and ChileCrop Science, 1995