Genetic Map Construction and Fiber Quality QTL Mapping Using the CottonSNP80K Array in Upland Cotton

Publication Overview
TitleGenetic Map Construction and Fiber Quality QTL Mapping Using the CottonSNP80K Array in Upland Cotton
AuthorsTan Z, Zhang Z, Sun X, Li Q, Sun Y, Yang P, Wang W, Liu X, Chen C, Liu D, Teng Z, Guo K, Zhang J, Liu D, Zhang Z
TypeJournal Article
Journal NameFrontiers in plant science
Volume9
Year2018
Page(s)225
CitationTan Z, Zhang Z, Sun X, Li Q, Sun Y, Yang P, Wang W, Liu X, Chen C, Liu D, Teng Z, Guo K, Zhang J, Liu D, Zhang Z. Genetic Map Construction and Fiber Quality QTL Mapping Using the CottonSNP80K Array in Upland Cotton. Frontiers in plant science. 2018; 9:225.

Abstract

Cotton fiber quality traits are controlled by multiple quantitative trait loci (QTL), and the improvement of these traits requires extensive germplasm. Herein, an Upland cotton cultivar from America, Acala Maxxa, was crossed with a local high fiber quality cultivar, Yumian 1, and 180 recombinant inbred lines (RILs) were obtained. In order to dissect the genetic basis of fiber quality differences between these parents, a genetic map containing 12116 SNP markers was constructed using the CottonSNP80K assay, which covered 3741.81 cM with an average distance of 0.31 cM between markers. Based on the genetic map and growouts in three environments, we detected a total of 104 QTL controlling fiber quality traits. Among these QTL, 25 were detected in all three environments and 35 in two environments. Meanwhile, 19 QTL clusters were also identified, and nine contained at least one stable QTL (detected in three environments for a given trait). These stable QTL or QTL clusters are priorities for fine mapping, identifying candidate genes, elaborating molecular mechanisms of fiber development, and application in cotton breeding programs by marker-assisted selection (MAS).

Germplasm
This publication contains information about 1 stocks:
Stock NameGRIN IDSpeciesType
Yumian-1 x Acala Maxxa, RILGossypium hirsutumpopulation
Features
This publication contains information about 189 features:
Feature NameUniquenameType
fiber elongationqFEL.YAM-RIL-2018_chr01.cq15QTL
fiber elongationqFEL.YAM-RIL-2018_chr01.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr01.hi16QTL
fiber elongationqFEL.YAM-RIL-2018_chr02.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr05.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr07.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr08.cq15QTL
fiber elongationqFEL.YAM-RIL-2018_chr08.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr08.hi16QTL
fiber elongationqFEL.YAM-RIL-2018_chr10.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr10.hi16.1QTL
fiber elongationqFEL.YAM-RIL-2018_chr10.hi16.2QTL
fiber elongationqFEL.YAM-RIL-2018_chr11.cq15.1QTL
fiber elongationqFEL.YAM-RIL-2018_chr11.cq15.2QTL
fiber elongationqFEL.YAM-RIL-2018_chr11.cq16.1QTL
fiber elongationqFEL.YAM-RIL-2018_chr11.cq16.2QTL
fiber elongationqFEL.YAM-RIL-2018_chr13.cq15QTL
fiber elongationqFEL.YAM-RIL-2018_chr13.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr13.hi16.1QTL
fiber elongationqFEL.YAM-RIL-2018_chr13.hi16.2QTL
fiber elongationqFEL.YAM-RIL-2018_chr15.cq15QTL
fiber elongationqFEL.YAM-RIL-2018_chr15.cq16QTL
fiber elongationqFEL.YAM-RIL-2018_chr15.hi16.1QTL
fiber elongationqFEL.YAM-RIL-2018_chr15.hi16.2QTL
fiber elongationqFEL.YAM-RIL-2018_chr18.cq16QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
YAM-RIL-2018
Featuremaps
This publication contains information about 1 maps:
Map Name
Yumian-1 x Acala Maxxa, RIL (2018)
Properties
Additional details for this publication include:
Property NameValue
Publication ModelElectronic-eCollection
ISSN1664-462X
pISSN1664-462X
Publication Date2018
Journal AbbreviationFront Plant Sci
DOI10.3389/fpls.2018.00225
Elocation10.3389/fpls.2018.00225
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountrySwitzerland