A 3347-locus genetic recombination map of sequence-tagged sites reveals features of genome organization, transmission and evolution of cotton (Gossypium).

Publication Overview
TitleA 3347-locus genetic recombination map of sequence-tagged sites reveals features of genome organization, transmission and evolution of cotton (Gossypium).
AuthorsRong J; Abbey C; Bowers JE; Brubaker CL; Chang C; Chee PW; Delmonte TA; Ding X; Garza JJ; Marler BS; Park CH; Pierce GJ; Rainey KM; Rastogi VK; Schulze SR; Trolinder NL; Wendel JF; Wilkins TA; Williams-Coplin TD; Wing RA; Wright RJ; Zhao X; Zhu L; Paterson AH
TypeJournal Article
Journal NameGenetics
Volume166
Issue1
Year2004
Page(s)389 417
CitationRong J, Abbey C, Bowers JE, Brubaker CL, Chang C, Chee PW, Delmonte TA, Ding X, Garza JJ, Marler BS, Park CH, Pierce GJ, Rainey KM, Rastogi VK, Schulze SR, Trolinder NL, Wendel JF, Wilkins TA, Williams-Coplin TD, Wing RA, Wright RJ, Zhao X, Zhu L, Paterson AH. A 3347-locus genetic recombination map of sequence-tagged sites reveals features of genome organization, transmission and evolution of cotton (Gossypium). Genetics. 2004 Jan; 166(1):389-417.
Publication CodeGEN-166-389

Abstract

We report genetic maps for diploid (D) and tetraploid (AtDt) Gossypium genomes composed of sequence-tagged sites (STS) that foster structural, functional, and evolutionary genomic studies. The maps include, respectively, 2584 loci at 1.72-cM (apprx600 kb) intervals based on 2007 probes (AtDt) and 763 loci at 1.96-cM (apprx500 kb) intervals detected by 662 probes (D). Both diploid and tetraploid cottons exhibit negative crossover interference\\; i.e., double recombinants are unexpectedly abundant. We found no major structural changes between Dt and D chromosomes, but confirmed two reciprocal translocations between At chromosomes and several inversions. Concentrations of probes in corresponding regions of the various genomes may represent centromeres, while genome-specific concentrations may represent heterochromatin. Locus duplication patterns reveal all 13 expected homeologous chromosome sets and lend new support to the possibility that a more ancient polyploidization event may have predated the A-D divergence of 6-11 million years ago. Identification of SSRs within 312 RFLP sequences plus direct mapping of 124 SSRs and exploration for CAPS and SNPs illustrate the "portability" of these STS loci across populations and detection systems useful for marker-assisted improvement of the world's leading fiber crop. These data provide new insights into polyploid evolution and represent a foundation for assembly of a finished sequence of the cotton genome.
Features
This publication contains information about 3,361 features:
Feature NameUniquenameType
pAR04F11pAR04F11genetic_marker
pAR04F12pAR04F12genetic_marker
pAR04G03pAR04G03genetic_marker
pAR04G04pAR04G04genetic_marker
pAR04G05pAR04G05genetic_marker
pAR04G06pAR04G06genetic_marker
pAR04G07pAR04G07genetic_marker
pAR04G08pAR04G08genetic_marker
pAR04G09pAR04G09genetic_marker
pAR04G10pAR04G10genetic_marker
pAR04G11pAR04G11genetic_marker
pAR04G12pAR04G12genetic_marker
pAR04H03pAR04H03genetic_marker
pAR04H05pAR04H05genetic_marker
pAR04H06pAR04H06genetic_marker
pAR04H07pAR04H07genetic_marker
pAR04H08pAR04H08genetic_marker
pAR04H09pAR04H09genetic_marker
pAR04H10pAR04H10genetic_marker
pAR04H11pAR04H11genetic_marker
pAR04H12pAR04H12genetic_marker
pAR0500pAR0500genetic_marker
pAR0503pAR0503genetic_marker
pAR0504pAR0504genetic_marker
pAR0505pAR0505genetic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
Palmeri x K-101, F2 (2007)
Properties
Additional details for this publication include:
Property NameValue
ISSN0016-6731
Journal AbbreviationGenetics
Journal CountryUnited States
Language Abbreng
Publication Date2004 Jan
Publication ModelPrint
Publication TypeJournal Article
Publication TypeResearch Support, Non-U.S. Gov't
Publication TypeResearch Support, U.S. Gov't, Non-P.H.S.
Journal CodeGEN
LanguageEnglish
pISSN0016-6731
Publication CodeGEN-166-389
Published LocationUnited States
URLhttps://www.ncbi.nlm.nih.gov/pubmed/15020432
KeywordsEST; GSS; Chromosome Mapping; polyploid formation