Cotton genome mapping with new microsatellites from Acala 'Maxxa' BAC-ends.

Publication Overview
TitleCotton genome mapping with new microsatellites from Acala 'Maxxa' BAC-ends.
AuthorsFrelichowski JE Jr; Palmer MB; Main D; Tomkins JP; Cantrell RG; Stelly DM; Yu J; Kohel RJ; Ulloa M
TypeJournal Article
Journal NameMolecular Genetics and Genomics
Volume275
Issue5
Year2006
Page(s)479 491
CitationFrelichowski JJ, Palmer M, Main D, Tomkins J, Cantrell R, Stelly D, Yu J, Kohel R, Ulloa M. Cotton genome mapping with new microsatellites from Acala 'Maxxa' BAC-ends. Molecular genetics and genomics MGG. 2006; 275(5):479-491.
Publication CodeMGG-275-479

Abstract

Fine mapping and positional cloning will eventually improve with the anchoring of additional markers derived from genomic clones such as BACs. From 2,603 new BAC-end genomic sequences from Gossypium hirsutum Acala 'Maxxa', 1,316 PCR primer pairs (designated as MUSB) were designed to flank microsatellite or simple sequence repeat motif sequences. Most (1164 or 88\\%) MUSB primer pairs successfully amplified DNA from three species of cotton with an average of three amplicons per marker and 365 markers (21\\%) were polymorphic between G. hirsutum and G. barbadense. An interspecific RIL population developed from the above two entries was used to map 433 marker loci and 46 linkage groups with a genetic distance of 2,126.3 cM covering approximately 45\\% of the cotton genome and an average distance between two loci of 4.9 cM. Based on genome-specific chromosomes identified in G. hirsutum tetraploid (A and D), 56.9\\% of the coverage was located on the A subgenome while 39.7\\% was assigned to the D subgenome in the genetic map, suggesting that the A subgenome may be more polymorphic and recombinationally active than originally thought. The linkage groups were assigned to 23 of the 26 chromosomes. This is the first genetic map in which the linkage groups A01 and A02/D03 have been assigned to specific chromosomes. In addition the MUSB-derived markers from BAC-end sequences markers allows fine genetic and QTL mapping of important traits and for the first time provides reconciliation of the genetic and physical maps. Limited QTL analyses suggested that loci on chromosomes 2, 3, 12, 15 and 18 may affect variation in fiber quality traits. The original BAC clones containing the newly mapped MUSB that tag the QTLs provide critical DNA regions for the discovery of gene sequences involved in biological processes such as fiber development and pest resistance in cotton.
Features
This publication contains information about 1,316 features:
Feature NameUniquenameType
MUSB0151MUSB0151genetic_marker
MUSB0152MUSB0152genetic_marker
MUSB0153MUSB0153genetic_marker
MUSB0154MUSB0154genetic_marker
MUSB0155MUSB0155genetic_marker
MUSB0156MUSB0156genetic_marker
MUSB0157MUSB0157genetic_marker
MUSB0158MUSB0158genetic_marker
MUSB0159MUSB0159genetic_marker
MUSB0160MUSB0160genetic_marker
MUSB0161MUSB0161genetic_marker
MUSB0162MUSB0162genetic_marker
MUSB0163MUSB0163genetic_marker
MUSB0164MUSB0164genetic_marker
MUSB0165MUSB0165genetic_marker
MUSB0166MUSB0166genetic_marker
MUSB0167MUSB0167genetic_marker
MUSB0168MUSB0168genetic_marker
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MUSB0170MUSB0170genetic_marker
MUSB0171MUSB0171genetic_marker
MUSB0172MUSB0172genetic_marker
MUSB0173MUSB0173genetic_marker
MUSB0174MUSB0174genetic_marker
MUSB0175MUSB0175genetic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
TM-1 x 3-79, RIL (2006)
Properties
Additional details for this publication include:
Property NameValue
eISSN1617-4623
Journal AliasMGG Molecular Genetics and Genomics; Molecular Genetics and Genomics : MGG; Molecular Genetics & Genomics : MGG
Journal CodeMGG
LanguageEnglish
pISSN1617-4615
Publication CodeMGG-275-479
Published LocationGermany
Published Location479 491
Language Abbreng
URLhttp://dx.doi.org/10.1007/s00438-006-0106-z
Publication TypeJournal Article
Publication Model[electronic resource].
Publication Date2006
KeywordsSimple sequence repeat (SSR); Bacterial artificial chromosome (BAC); BAC-end sequencing; Genetic mapping; Quantitative trait loci (QTL); Fine mapping; Molecular tagging; Gossypium hirsutum; *Chromosomes, Artificial, Bacterial; Genetic Markers; *Genome, Plant; Gossypium/*genetics; *Microsatellite Repeats; *Physical Chromosome Mapping; gossypium-hirsutum l.; est-derived microsatellites; simple sequence repeats; genetic-linkage maps; chromosomal assignment; allotetraploid cotton; polyploid formation; resistance genes; cell elongation; fiber quality, quantitative trait loci, linkage (genetics), microsatellite repeats, plant genetics, chromosome mapping, cotton