Molecular dissection of interspecific variation between Gossypium hirsutum and G-barbadense (cotton) by a backcross-self approach: II. Fiber fineness.

Publication Overview
TitleMolecular dissection of interspecific variation between Gossypium hirsutum and G-barbadense (cotton) by a backcross-self approach: II. Fiber fineness.
AuthorsDraye X; Chee P; Jiang CX; Decanini L; Delmonte TA; Bredhauer R; Smith CW; Paterson AH
TypeJournal Article
Journal NameTheoretical and Applied Genetics
Volume111
Issue(4)
Year2005
Page(s)764 771
CitationDraye X, Chee P, Jiang C, Decanini L, Delmonte T, Bredhauer R, Smith C, Paterson A. Molecular dissection of interspecific variation between Gossypium hirsutum and G. barbadense (cotton) by a backcross-self approach. II. Fiber fineness. Theoretical and applied genetics. 2005; 111(4):764-771.
Publication CodeTAG-111-764

Abstract

A backcross-self population from a cross between Gossypium hirsutum and G. barbadense was used to dissect the molecular basis of genetic variation governing two parameters reflecting lint fiber fineness and to compare the precision of these two measurements. By applying a detailed restriction fragment length polymorphism (RFLP) map to 3,662 BC(3)F(2) plants from 24 independently derived BC(3) families, we were able to detect 32 and nine quantitative trait loci (QTLs) for fiber fineness and micronaire (MIC), respectively. The discovery of larger numbers of QTLs in this study than previously found in other studies based on F(2) populations grown in favorable environments reflects the ability of the backcross-self design to resolve smaller QTL effects. Although the two measurements differed dramatically in the number of QTLs detected, seven of the nine MIC QTLs were also associated with fiber fineness. This supports other data in suggesting that fiber fineness more accurately reflects the underlying physical properties of cotton fibers and, consequently, is a preferable trait for selection. "Negative transgression," with the majority of BC(3)F(2) families showing average phenotypes that were poorer than that of the inferior parent, suggests that many of the new gene combinations formed by interspecific hybridization are maladaptive and may contribute to the lack of progress in utilizing G. barbadense in conventional breeding programs to improve upland cotton.
Features
This publication contains information about 106 features:
Feature NameUniquenameType
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fiber finenessqFF.TP-BC3F2.94-15_ch02.pAR0451QTL
fiber finenessqFF.TP-BC3F2.94-33_ch02.pAR0451QTL
fiber finenessqFF.TP-BC3F2.94-03_ch01.G1097QTL
fiber finenessqFF.TP-BC3F2.94-10_ch03.pAR0172QTL
fiber finenessqFF.TP-BC3F2.94-06_ch13.pAR0338QTL
fiber finenessqFF.TP-BC3F2.94-03_ch01.pGH468QTL
fiber finenessqFF.TP-BC3F2.94-29_ch18.P09-53QTL
fiber finenessqFF.TP-BC3F2.94-03_ch20.A1163QTL
fiber finenessqFF.TP-BC3F2.94-24_ch20.P05-57QTL
fiber finenessqFF.TP-BC3F2.94-03_ch10.A1158QTL
fiber finenessqFF.TP-BC3F2.94-24_ch10.pVNC163QTL
fiber finenessqFF.TP-BC3F2.94-15_ch20.G1104QTL
fiber finenessqFF.TP-BC3F2.94-31_ch25.pAR0969QTL
fiber finenessqFF.TP-BC3F2.94-31_ch25.PXP1-47QTL
fiber finenessqFF.TP-BC3F2.94-31_ch25.pGH309QTL
fiber finenessqFF.TP-BC3F2.94-28_ch26.pGH413QTL
fiber finenessqFF.TP-BC3F2.94-31_ch06.PXP4-08QTL
fiber finenessqFF.TP-BC3F2.94-28_ch12.A1252QTL
fiber finenessqFF.TP-BC3F2.94-31_ch11.pAR0864QTL
fiber finenessqFF.TP-BC3F2.94-29_ch11.A1672QTL
fiber finenessqFF.TP-BC3F2.94-29_ch21.A1174QTL
fiber finenessqFF.TP-BC3F2.94-29_ch21.PGH505QTL
fiber finenessqFF.TP-BC3F2.94-21_ch21.pAR0038QTL
fiber finenessqFF.TP-BC3F2.94-21_ch21.A1296QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
TP-BC3F2-2005
Featuremaps
This publication contains information about 1 maps:
Map Name
Tamcot-2111 x Pima S-6, BC3F2 (2005)
Properties
Additional details for this publication include:
Property NameValue
URLhttp://www.springerlink.com/content/100386/
pISSN0040-5752
Journal CodeTAG
eISSN1432-2242
Journal AliasTheoretical and Applied Genetics. Theoretische und angewandte Genetik
PublisherSpringer; Springer-Verlag GmbH
Published LocationGermany
Publication CodeTAG-111-764
LanguageEnglish
Publication TypeJournal Article
Publication Date2005
Language Abbreng
Publication ModelPrint-Electronic
ISSN0040-5752
Journal AbbreviationTheor. Appl. Genet.
Publication TypeJournal Article
Publication TypeResearch Support, Non-U.S. Gov't
Publication TypeResearch Support, U.S. Gov't, Non-P.H.S.
Journal CountryGermany
Keywordsqtl analysis; Gossypium hirsutum; genome; organization; evolution; map, Gossypium barbadense, cotton, interspecific hybridization, quantitative trait loci, plant fibers, fiber quality, analysis of variance, backcrossing, alleles, chromosome mapping, genetic markers, restriction fragment length polymorphism, loci, lint cotton, fiber fineness, fiber diameter