Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations

Bibliographic Details
Main Authors: Spindel, Jennifer, Wright, Mark, Chen, Charles, Cobb, Joshua N., Gage, Joseph, Harrington, Sandra, Lorieux, Mathias, Ahmadi, Nourollah, McCouch, Susan
Format: Journal Article
Language:Inglés
Published: Springer 2013
Subjects:
Online Access:https://hdl.handle.net/10568/51530
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author Spindel, Jennifer
Wright, Mark
Chen, Charles
Cobb, Joshua N.
Gage, Joseph
Harrington, Sandra
Lorieux, Mathias
Ahmadi, Nourollah
McCouch, Susan
author_browse Ahmadi, Nourollah
Chen, Charles
Cobb, Joshua N.
Gage, Joseph
Harrington, Sandra
Lorieux, Mathias
McCouch, Susan
Spindel, Jennifer
Wright, Mark
author_facet Spindel, Jennifer
Wright, Mark
Chen, Charles
Cobb, Joshua N.
Gage, Joseph
Harrington, Sandra
Lorieux, Mathias
Ahmadi, Nourollah
McCouch, Susan
author_sort Spindel, Jennifer
collection Repository of Agricultural Research Outputs (CGSpace)
format Journal Article
id CGSpace51530
institution CGIAR Consortium
language Inglés
publishDate 2013
publishDateRange 2013
publishDateSort 2013
publisher Springer
publisherStr Springer
record_format dspace
spelling CGSpace515302025-11-12T05:55:12Z Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations Spindel, Jennifer Wright, Mark Chen, Charles Cobb, Joshua N. Gage, Joseph Harrington, Sandra Lorieux, Mathias Ahmadi, Nourollah McCouch, Susan oryza sativa genotypes genetic markers genetic maps plant breeding quantitative trait loci aluminium tolerance genotipos marcadores genéticos mapas genéticos fitomejoramiento loci de rasgos cuantitativos aluminio tolerancia 2013-11 2014-11-12T13:42:27Z 2014-11-12T13:42:27Z Journal Article https://hdl.handle.net/10568/51530 en Open Access application/pdf Springer Spindel, Jennifer; Wright, Mark; Chen, Charles; Cobb, Joshua; Gage, Joseph; Harrington, Sandra; Lorieux, Mathias; Ahmadi, Nourollah; McCouch, Susan. 2013. Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations. Theoretical and Applied Genetics. 126(11): 2699-2716.
spellingShingle oryza sativa
genotypes
genetic markers
genetic maps
plant breeding
quantitative trait loci
aluminium
tolerance
genotipos
marcadores genéticos
mapas genéticos
fitomejoramiento
loci de rasgos cuantitativos
aluminio
tolerancia
Spindel, Jennifer
Wright, Mark
Chen, Charles
Cobb, Joshua N.
Gage, Joseph
Harrington, Sandra
Lorieux, Mathias
Ahmadi, Nourollah
McCouch, Susan
Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title_full Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title_fullStr Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title_full_unstemmed Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title_short Bridging the genotyping gap: using genotyping by sequencing (GBS) to add high-density SNP markers and new value to traditional bi-parental mapping and breeding populations
title_sort bridging the genotyping gap using genotyping by sequencing gbs to add high density snp markers and new value to traditional bi parental mapping and breeding populations
topic oryza sativa
genotypes
genetic markers
genetic maps
plant breeding
quantitative trait loci
aluminium
tolerance
genotipos
marcadores genéticos
mapas genéticos
fitomejoramiento
loci de rasgos cuantitativos
aluminio
tolerancia
url https://hdl.handle.net/10568/51530
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