Genetic mapping and quantitative trait locus analysis of fiber quality traits using a three-parent composite population in upland cotton ( Gossypium hirsutum L.).

Publication Overview
TitleGenetic mapping and quantitative trait locus analysis of fiber quality traits using a three-parent composite population in upland cotton ( Gossypium hirsutum L.).
AuthorsZhang K; Zhang J; Ma J; Tang SY; Liu DJ; Teng ZH; Liu DX; Zhang ZS
TypeJournal Article
Journal NameMolecular Breeding
Volume29
Issue(2)
Year2012
Page(s)335 348
CitationZhang K, Zhang J, Ma J, Tang S, Liu D, Teng Z, Liu D, Zhang Z. Genetic mapping and quantitative trait locus analysis of fiber quality traits using a three-parent composite population in upland cotton (Gossypium hirsutum L.). Molecular breeding. 2012; 29(2):335-348
Publication CodeMBR-29-335

Abstract

Composite cross populations (CP) developed from three or more cultivars/lines are frequently used to improve agronomic and economic traits in crop cultivar development programs. Employing CP in linkage map construction and quantitative trait locus (QTL) mapping may increase the marker density of upland cotton ( Gossypium hirsutum L.) genetic maps, exploit more adequate gene resources and facilitate marker-assisted selection (MAS). To construct a relatively high-density map and identify QTL associated with fiber quality traits in upland cotton, three elite upland cultivars/lines, Yumian 1, CRI 35 and 7,235, were used to obtain the segregating population, Yumian 1/CRI 35//Yumian 1/7,235. A genetic map containing 978 simple sequence repeat (SSR) loci and 69 linkage groups was constructed; the map spanned 4,184.4 cM, covering approximately 94.1% of the entire tetraploid cotton genome. A total of 63 QTL were detected, explaining 8.1-55.8% of the total phenotypic variance: 11 QTL for fiber elongation, 16 QTL for fiber length, 9 QTL for fiber micronaire reading, 10 QTL for fiber strength and 17 QTL for fiber length uniformity. The genetic map and QTL detected for fiber quality traits are promising for further breeding programs of upland cotton with improved fiber quality.
Features
This publication contains information about 72 features:
Feature NameUniquenameType
BNL3092BNL3092genetic_marker
TMB3112TMB3112genetic_marker
BNLpGCT116BNLpGCT116genetic_marker
fiber elongationqFEL.YCY7-4WC_chr07-2.bb09QTL
fiber elongationqFEL.YCY7-4WC_chr08-3.bb08QTL
fiber elongationqFEL.YCY7-4WC_chr15-2.bb08.1QTL
fiber elongationqFEL.YCY7-4WC_chr15-2.bb08.2QTL
fiber elongationqFEL.YCY7-4WC_chr16-1.bb07QTL
fiber elongationqFEL.YCY7-4WC_chr19-1.bb08QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb07.1QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb07.2QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb08QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb07.3QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb07.4QTL
fiber elongationqFEL.YCY7-4WC_chr24.bb07.5QTL
fiber lengthqFL.YCY7-4WC_chr01-1.bb07QTL
fiber lengthqFL.YCY7-4WC_chr01-1.bb08QTL
fiber lengthqFL.YCY7-4WC_chr03-2.bb07QTL
fiber lengthqFL.YCY7-4WC_chr03-2.bb09QTL
fiber lengthqFL.YCY7-4WC_chr05-2.bb07QTL
fiber lengthqFL.YCY7-4WC_chr08-3.bb07QTL
fiber lengthqFL.YCY7-4WC_chr12.bb08QTL
fiber lengthqFL.YCY7-4WC_chr14-2.bb07QTL
fiber lengthqFL.YCY7-4WC_chr15-2.bb08QTL
fiber lengthqFL.YCY7-4WC_chr19-3.bb07QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
YCY7-4WC-2012
Featuremaps
This publication contains information about 1 maps:
Map Name
(YM1 x CCRI35) x (YM1 x 7235), 4WC (2012)
Properties
Additional details for this publication include:
Property NameValue
PublisherSpringer
Published LocationGermany
eISSN1572-9788
pISSN1380-3743
URLhttp://www.springerlink.com/content/100317/
Journal AliasMolecular Breeding: New Strategies in Plant
Journal CodeMBR
Publication CodeMBR-29-335
LanguageEnglish
KeywordsFiber quality; Linkage map; QTL; Upland cotton