High-density 80 K SNP array is a powerful tool for genotyping G. hirsutum accessions and genome analysis

Publication Overview
TitleHigh-density 80 K SNP array is a powerful tool for genotyping G. hirsutum accessions and genome analysis
AuthorsCaiping Cai, Guozhong Zhu, Tianzhen Zhang, and Wangzhen Guo
TypeJournal Article
Journal NameBMC Genomics
Volume18
Year2017
Page(s)654
CitationCai C., Zhu G., Zhang T., Guo W. High-density 80 K SNP array is a powerful tool for genotyping G. hirsutum accessions and genome analysis BMC Genomics 2017 18:654

Abstract

Background: High-throughput genotyping platforms play important roles in plant genomic studies. Cotton (Gossypium spp.) is the world’s important natural textile fiber and oil crop. Upland cotton accounts for more than 90% of the world’s cotton production, however, modern upland cotton cultivars have narrow genetic diversity. The amounts of genomic sequencing and re-sequencing data released make it possible to develop a high-quality single nucleotide polymorphism (SNP) array for intraspecific genotyping detection in cotton. Results: Here we report a high-throughput CottonSNP80K array and its utilization in genotyping detection in different cotton accessions. 82,259 SNP markers were selected from the re-sequencing data of 100 cotton cultivars and used to produce the array on the Illumina Infinium platform. 77,774 SNP loci (94.55%) were successfully synthesized on the array. Of them, 77,252 (99.33%) had call rates of >95% in 352 cotton accessions and 59,502 (76.51%) were polymorphic loci. Application tests using 22 cotton accessions with parent/F1 combinations or with similar genetic backgrounds showed that CottonSNP80K array had high genotyping accuracy, good repeatability, and wide applicability. Phylogenetic analysis of 312 cotton cultivars and landraces with wide geographical distribution showed that they could be classified into ten groups, irrelevant of their origins. We found that the different landraces were clustered in different subgroups, indicating that these landraces were major contributors to the development of different breeding populations of modern G. hirsutum cultivars in China. We integrated a total of 54,588 SNPs (MAFs >0.05) associated with 10 salt stress traits into 288 G. hirsutum accessions for genome-wide association studies (GWAS), and eight significant SNPs associated with three salt stress traits were detected. Conclusions: We developed CottonSNP80K array with high polymorphism to distinguish upland cotton accessions. Diverse application tests indicated that the CottonSNP80K play important roles in germplasm genotyping, variety verification, functional genomics studies, and molecular breeding in cotton. Keywords: Single nucleotide polymorphism (SNP), Array, Upland cotton, Genotyping identification, Genome-wide association studies (GWAS), Molecular breeding
Germplasm
This publication contains information about 302 stocks:
Stock NameGRIN IDSpeciesType
Xin Lu Zao 28Gossypium hirsutumaccession
Xin Lu Zhong 35Gossypium hirsutumaccession
Xin Qiu 1Gossypium hirsutumaccession
Yu Mian 9Gossypium hirsutumaccession
Yu Mian 18Gossypium hirsutumaccession
Lu Mian Yan 21Gossypium hirsutumaccession
Lu Mian Yan 36Gossypium hirsutumaccession
Ji Mian 228Gossypium hirsutumaccession
Ji Mian 958Gossypium hirsutumaccession
Lu Mian Yan 27Gossypium hirsutumaccession
Lu Mian Yan 29Gossypium hirsutumaccession
sGK791Gossypium hirsutumaccession
Zheng Nong Mian 4Gossypium hirsutumaccession
sGK958Gossypium hirsutumaccession
Yinrui361Gossypium hirsutumaccession
Ao Mian 618Gossypium hirsutumaccession
Chuang You Mian 9Gossypium hirsutumaccession
Fu Mian 289Gossypium hirsutumaccession
Guan Mian 4Gossypium hirsutumaccession
Han Mian 559Gossypium hirsutumaccession
Ji 3927Gossypium hirsutumaccession
Ji Mian 169Gossypium hirsutumaccession
Sheng Mian 1Gossypium hirsutumaccession
Xin Zhi 5Gossypium hirsutumaccession
Guo Xin Mian 9Gossypium hirsutumaccession

Pages

Features
This publication contains information about 77,774 features:
Feature NameUniquenameType
NAU_TM65870NAU_TM65870genetic_marker
NAU_TM65871NAU_TM65871genetic_marker
NAU_TM65872NAU_TM65872genetic_marker
NAU_TM65873NAU_TM65873genetic_marker
NAU_TM65875NAU_TM65875genetic_marker
NAU_TM65876NAU_TM65876genetic_marker
NAU_TM65877NAU_TM65877genetic_marker
NAU_TM65878NAU_TM65878genetic_marker
NAU_TM65879NAU_TM65879genetic_marker
NAU_TM65880NAU_TM65880genetic_marker
NAU_TM65881NAU_TM65881genetic_marker
NAU_TM65882NAU_TM65882genetic_marker
NAU_TM65883NAU_TM65883genetic_marker
NAU_TM65884NAU_TM65884genetic_marker
NAU_TM65885NAU_TM65885genetic_marker
NAU_TM65886NAU_TM65886genetic_marker
NAU_TM65887NAU_TM65887genetic_marker
NAU_TM65888NAU_TM65888genetic_marker
NAU_TM65889NAU_TM65889genetic_marker
NAU_TM65890NAU_TM65890genetic_marker
NAU_TM65891NAU_TM65891genetic_marker
NAU_TM65892NAU_TM65892genetic_marker
NAU_TM65893NAU_TM65893genetic_marker
NAU_TM65894NAU_TM65894genetic_marker
NAU_TM65895NAU_TM65895genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Salt-stress-test_NAU-Guo-2017
Libraries
This publication contains information about 1 libraries:
Library NameUnique NameOrganism
NAU_CottonSNP80KNAU_CottonSNP80KGossypium hirsutum
Properties
Additional details for this publication include:
Property NameValue
DOI10.1186/s12864-017-4062-2
Journal AbbreviationBMC Genomics
KeywordsSingle nucleotide polymorphism (SNP), Array, Upland cotton, Genotyping identification, Genome-wide association studies (GWAS), Molecular breeding