Molecular mapping of QTLs for resistance to Fusarium wilt (race 1) and Ascochyta blight in chickpea (Cicer arietinum L.)

Publication Overview
TitleMolecular mapping of QTLs for resistance to Fusarium wilt (race 1) and Ascochyta blight in chickpea (Cicer arietinum L.)
AuthorsSabbavarapu MM, Sharma M, Chamarthi SK, Swapna N, Rathore A, Thudi M, Gaur PM, Pande S, Singh S, Kaur L, Varshney RK
TypeJournal Article
Journal NameEuphytica
Volume193
Issue1
Year2013
Page(s)121-133
CitationSabbavarapu MM, Sharma M, Chamarthi SK, Swapna N, Rathore A, Thudi M, Gaur PM, Pande S, Singh S, Kaur L, Varshney RK. Molecular mapping of QTLs for resistance to Fusarium wilt (race 1) and Ascochyta blight in chickpea (Cicer arietinum L.). Euphytica. 2013; 193(1):121-133.

Abstract

Fusarium wilt (FW) and Ascochyta blight (AB) are two important diseases of chickpea which cause 100� % yield losses under favorable conditions. With an objective to validate and/or to identify novel quantitative trait loci (QTLs) for resistance to race 1 of FW caused by Fusarium oxysporum f. sp. ciceris and AB caused by Ascochyta rabiei in chickpea, two new mapping populations (F₂:₃) namely ‘C 214’ (FW susceptible)� ×� ‘WR 315’ (FW resistant) and ‘C 214’ (AB susceptible)� ×� ‘ILC 3279’ (AB resistant) were developed. After screening 371 SSR markers on parental lines and genotyping the mapping populations with polymorphic markers, two new genetic maps comprising 57 (C 214� ×� WR 315) and 58 (C 214� ×� ILC 3279) loci were developed. Analysis of genotyping data together with phenotyping data collected on mapping population for resistance to FW in field conditions identified two novel QTLs which explained 10.4–18.8� % of phenotypic variation. Similarly, analysis of phenotyping data for resistance to seedling resistance and adult plant resistance for AB under controlled and field conditions together with genotyping data identified a total of 6 QTLs explaining up to 31.9� % of phenotypic variation. One major QTL, explaining 31.9� % phenotypic variation for AB resistance was identified in both field and controlled conditions and was also reported from different resistant lines in many earlier studies. This major QTL for AB resistance and two novel QTLs identified for FW resistance are the most promising QTLs for molecular breeding separately or pyramiding for resistance to FW and AB for chickpea improvement.
Features
This publication contains information about 106 features:
Feature NameUniquenameType
CaM1101CaM1101genetic_marker
CaM1122CaM1122genetic_marker
CaM1125CaM1125genetic_marker
CaM1158CaM1158genetic_marker
CaM1402CaM1402genetic_marker
CaM1502CaM1502genetic_marker
CaM1515CaM1515genetic_marker
CaM1770CaM1770genetic_marker
CaM2049CaM2049genetic_marker
CaM2101CaM2101genetic_marker
Cm1402Cm1402genetic_marker
GA16GA16genetic_marker
GA20GA20genetic_marker
GAA47GAA47genetic_marker
H1B17H1B17genetic_marker
H1C22H1C22genetic_marker
H1D24H1D24genetic_marker
H1F05H1F05genetic_marker
H1G16H1G16genetic_marker
H1G20H1G20genetic_marker
H1H15H1H15genetic_marker
H1I16H1I16genetic_marker
H1L161H1L161genetic_marker
H1O12H1O12genetic_marker
H2B061H2B061genetic_marker

Pages

Projects
This publication contains information about 2 projects:
Project NameDescription
Chickpea-F.wilt_A.blight_resistance-Vershey-2013
Chickpea-QTL_Fusarium_Resistance-Sabbavarapu-2013
Featuremaps
This publication contains information about 2 maps:
Map Name
chickpea-C214xILC3279-F2
chickpea-C214xWR315-F2
Stocks
This publication contains information about 5 stocks:
Stock NameUniquenameType
C214xWR315C214xWR315population
C214xILC3279C214xILC3279population
C214C214accession
WR315WR315accession
ILC3279ILC3279accession
Properties
Additional details for this publication include:
Property NameValue
Publication Model[electronic resource].
Publication TypeJournal Article
Publication Date2013
Published Location|||
Language Abbreng
URLhttp://dx.doi.org/10.1007/s10681-013-0959-2
KeywordsAscochyta rabiei, Cicer arietinum, Fusarium oxysporum, Fusarium wilt, blight, breeding, chickpeas, chromosome mapping, loci, mature plants, microsatellite repeats, phenotypic variation, quantitative trait loci, races, seedlings