Functionally relevant microsatellite markers from chickpea transcription factor genes for efficient genotyping applications and trait association mapping

Publication Overview
TitleFunctionally relevant microsatellite markers from chickpea transcription factor genes for efficient genotyping applications and trait association mapping
AuthorsKujur A, Bajaj D, Saxena MS, Tripathi S, Upadhyaya HD, Gowda CL, Singh S, Jain M, Tyagi AK, Parida SK
TypeJournal Article
Journal NameDNA research : an international journal for rapid publication of reports on genes and genomes
Volume20
Issue4
Year2013
Page(s)355-74
CitationKujur A, Bajaj D, Saxena MS, Tripathi S, Upadhyaya HD, Gowda CL, Singh S, Jain M, Tyagi AK, Parida SK. Functionally relevant microsatellite markers from chickpea transcription factor genes for efficient genotyping applications and trait association mapping. DNA research : an international journal for rapid publication of reports on genes and genomes. 2013 Aug; 20(4):355-74.

Abstract

We developed 1108 transcription factor gene-derived microsatellite (TFGMS) and 161 transcription factor functional domain-associated microsatellite (TFFDMS) markers from 707 TFs of chickpea. The robust amplification efficiency (96.5%) and high intra-specific polymorphic potential (34%) detected by markers suggest their immense utilities in efficient large-scale genotyping applications, including construction of both physical and functional transcript maps and understanding population structure. Candidate gene-based association analysis revealed strong genetic association of TFFDMS markers with three major seed and pod traits. Further, TFGMS markers in the 5' untranslated regions of TF genes showing differential expression during seed development had higher trait association potential. The significance of TFFDMS markers was demonstrated by correlating their allelic variation with amino acid sequence expansion/contraction in the functional domain and alteration of secondary protein structure encoded by genes. The seed weight-associated markers were validated through traditional bi-parental genetic mapping. The determination of gene-specific linkage disequilibrium (LD) patterns in desi and kabuli based on single nucleotide polymorphism-microsatellite marker haplotypes revealed extended LD decay, enhanced LD resolution and trait association potential of genes. The evolutionary history of a strong seed-size/weight-associated TF based on natural variation and haplotype sharing among desi, kabuli and wild unravelled useful information having implication for seed-size trait evolution during chickpea domestication.

Features
This publication contains information about 1,269 features:
Feature NameUniquenameType
TFGMS194TFGMS194genetic_marker
TFGMS195TFGMS195genetic_marker
TFGMS196TFGMS196genetic_marker
TFGMS197TFGMS197genetic_marker
TFGMS198TFGMS198genetic_marker
TFGMS199TFGMS199genetic_marker
TFGMS2TFGMS2genetic_marker
TFGMS20TFGMS20genetic_marker
TFGMS200TFGMS200genetic_marker
TFGMS201TFGMS201genetic_marker
TFGMS202TFGMS202genetic_marker
TFGMS203TFGMS203genetic_marker
TFGMS204TFGMS204genetic_marker
TFGMS205TFGMS205genetic_marker
TFGMS206TFGMS206genetic_marker
TFGMS207TFGMS207genetic_marker
TFGMS208TFGMS208genetic_marker
TFGMS209TFGMS209genetic_marker
TFGMS21TFGMS21genetic_marker
TFGMS210TFGMS210genetic_marker
TFGMS211TFGMS211genetic_marker
TFGMS212TFGMS212genetic_marker
TFGMS213TFGMS213genetic_marker
TFGMS214TFGMS214genetic_marker
TFGMS215TFGMS215genetic_marker

Pages

Properties
Additional details for this publication include:
Property NameValue
Publication TypeJournal Article
Journal CountryEngland
Publication ModelPrint-Electronic
ISSN1756-1663
eISSN1756-1663
Publication Date2013 Aug
Journal AbbreviationDNA Res.
DOI10.1093/dnares/dst015
Elocation10.1093/dnares/dst015
LanguageEnglish
Language Abbreng
Publication TypeResearch Support, Non-U.S. Gov't