Detection, Validation, and Application of Genotyping-by-Sequencing Based Single Nucleotide Polymorphisms in Upland Cotton

Publication Overview
TitleDetection, Validation, and Application of Genotyping-by-Sequencing Based Single Nucleotide Polymorphisms in Upland Cotton
AuthorsIslam MS, Thyssen GN, Jenkins JN, Fang DD
TypeJournal Article
Journal NameThe Plant Genome
Volume8
Issue1
Year2015
Page(s)1-10
CitationIslam MS, Thyssen GN, Jenkins JN, and Fang DD. Detection, Validation, and Application of Genotyping-by-Sequencing Based Single Nucleotide Polymorphisms in Upland Cotton. The Plant Genome. 2015 March; 8(1):1-10.
Publication CodePGM-8-1

Abstract

The presence of two closely related subgenomes in the allotetraploid Upland cotton, combined with a narrow genetic base of the cultivated varieties, has hindered the identification of polymorphic genetic markers and their use in improving this important crop. Genotyping-by-sequencing (GBS) is a rapid way to identify single nucleotide polymorphism (SNP) markers; however, these SNPs may be specific to the sequenced cotton lines. Our objective was to obtain a large set of polymorphic SNPs with broad applicability to the cultivated cotton germplasm. We selected 11 diverse cultivars and their random-mated recombinant inbred progeny for SNP marker development via GBS. Two different GBS methodologies were used by Data2Bio (D2B) and the Institute for Genome Diversity (IGD) to identify 4441 and 1176 polymorphic SNPs with minor allele frequency of ³0.1, respectively. We further filtered the SNPs and aligned their sequences to the diploid Gossypium raimondii reference genome. We were able to use homeologous SNPs to assign 1071 SNP loci to the At subgenome and 1223 to the Dt subgenome. These filtered SNPs were located in genic regions about twice as frequently as expected by chance. We tested 111 of the SNPs in 154 diverse Upland cotton lines, which confirmed the utility of the SNP markers developed in such approach. Not only were the SNPs identified in the 11 cultivars present in the 154 cotton lines, no two cultivars had identical SNP genotypes. We conclude that GBS can be easily used to discover SNPs in Upland cotton, which can be converted to functional genotypic assays for use in breeding and genetic studies.
Features
This publication contains information about 5,839 features:
Feature NameUniquenameType
USDA_CFB2327USDA_CFB2327genetic_marker
USDA_CFB2328USDA_CFB2328genetic_marker
USDA_CFB2329USDA_CFB2329genetic_marker
USDA_CFB2330USDA_CFB2330genetic_marker
USDA_CFB2331USDA_CFB2331genetic_marker
USDA_CFB2332USDA_CFB2332genetic_marker
USDA_CFB2333USDA_CFB2333genetic_marker
USDA_CFB2334USDA_CFB2334genetic_marker
USDA_CFB2335USDA_CFB2335genetic_marker
USDA_CFB2336USDA_CFB2336genetic_marker
USDA_CFB2337USDA_CFB2337genetic_marker
USDA_CFB2338USDA_CFB2338genetic_marker
USDA_CFB2339USDA_CFB2339genetic_marker
USDA_CFB2340USDA_CFB2340genetic_marker
USDA_CFB2341USDA_CFB2341genetic_marker
USDA_CFB2342USDA_CFB2342genetic_marker
USDA_CFB2343USDA_CFB2343genetic_marker
USDA_CFB2344USDA_CFB2344genetic_marker
USDA_CFB2345USDA_CFB2345genetic_marker
USDA_CFB2346USDA_CFB2346genetic_marker
USDA_CFB2347USDA_CFB2347genetic_marker
USDA_CFB2348USDA_CFB2348genetic_marker
USDA_CFB2349USDA_CFB2349genetic_marker
USDA_CFB2350USDA_CFB2350genetic_marker
USDA_CFB2351USDA_CFB2351genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
USDA_CFB_SNP_genotype
Properties
Additional details for this publication include:
Property NameValue
Start Page1
Journal CodePGM
Publication CodePGM-8-1
DOI10.3835/plantgenome2014.07.0034