New Dinucleotide and Trinucleotide Microsatellite Marker Resources for Cotton Genome Research.

Publication Overview
TitleNew Dinucleotide and Trinucleotide Microsatellite Marker Resources for Cotton Genome Research.
AuthorsReddy OUK; Pepper AE; Abdurakhmonov I; Saha S; Jenkins JN; Brooks T; Bolek Y; El-Zik KM
TypeJournal Article
Journal NameJournal of Cotton Science
Volume5
Year2001
Page(s)103 113
CitationReddy O, Pepper A, Abdurakhmonov I, Saha S, Jenkins J, Brooks T, Bolek Y, El-Zik K. New dinucleotide and trinucleotide microsatellite marker resources for cotton genome research. Journal of cotton science. 2001; 5(2):103-113
Publication CodeJCS-5-103

Abstract

A collaborative multi-institutional program was initiated to streamline the process of microsatellite capture and characterization, development of microsatellites into informative molecular markers, and dissemination of marker information to the cotton research community. A simple and efficient biotin capture method was optimized and used to capture more than 10,000 fragments. Out of 588 fragments sequenced, nearly all contained a microsatellite repeat structure. Several repeat types were represented, including AGA, GA, CA, and ACA. Primers were designed to amplify 307 unique microsatellite loci (305 nuclear and two chloroplast-encoded). One hundred fifty-two microsatellite loci were amplified from G. hirsutum L. cv. TM-1 and Tamcot SP37, and G. barbadense L. cv. Pima 3-79 and Pima S-7. In this comparison, 74 of the primers (approximately 49\\% of the subset) showed detectable polymorphism. In a comparison of upland G. hirsutum cultivars, approximately 26\\% of the primers exhibited intraspecific polymorphism. Polymorphism was widely distributed among the various repeat types and structures (e.g., imperfect and compound repeats). Redundancy with two other previously derived microsatellite marker sets (BNL, CM) was low, implying that the total pool of microsatellites present in the cotton genome is large enough to satisfy the requirements of extensive genome mapping and marker-assisted selection projects.
Features
This publication contains information about 309 features:
Feature NameUniquenameType
JESPR0103JESPR0103genetic_marker
JESPR0104JESPR0104genetic_marker
JESPR0105JESPR0105genetic_marker
JESPR0106JESPR0106genetic_marker
JESPR0107JESPR0107genetic_marker
JESPR0108JESPR0108genetic_marker
JESPR0109JESPR0109genetic_marker
JESPR0110JESPR0110genetic_marker
JESPR0111JESPR0111genetic_marker
JESPR0112JESPR0112genetic_marker
JESPR0113JESPR0113genetic_marker
JESPR0114JESPR0114genetic_marker
JESPR0115JESPR0115genetic_marker
JESPR0116JESPR0116genetic_marker
JESPR0117JESPR0117genetic_marker
JESPR0118JESPR0118genetic_marker
JESPR0119JESPR0119genetic_marker
JESPR0120JESPR0120genetic_marker
JESPR0121JESPR0121genetic_marker
JESPR0122JESPR0122genetic_marker
JESPR0123JESPR0123genetic_marker
JESPR0124JESPR0124genetic_marker
JESPR0125JESPR0125genetic_marker
JESPR0126JESPR0126genetic_marker
JESPR0127JESPR0127genetic_marker

Pages

Properties
Additional details for this publication include:
Property NameValue
Publication TypeJournal Article
Publication Date2001
Language Abbreng
Publication Model[electronic resource].
Journal AbbreviationJ. cotton sci.
URLhttp://hdl.handle.net/10113/2837
pISSN1523-6919
Publication CodeJCS-5-103
Published LocationUnited States
eISSN1524-3303
Journal AliasThe journal of cotton science
Journal CodeJCS
LanguageEnglish
KeywordsGossypium barbadense, microsatellite repeats, genomics, molecular markers, gossypium hirsutum; gossypium barbadense; microsatellites; genome analysis; microsatellite repeats; genomics