Identification of QTLs Associated with Improved Resistance to Ascochyta Blight in an Interspecific Pea Recombinant Inbred Line Population

Publication Overview
TitleIdentification of QTLs Associated with Improved Resistance to Ascochyta Blight in an Interspecific Pea Recombinant Inbred Line Population
AuthorsJha A, Tar'an B, Stonehouse R, Warkentin T
TypeJournal Article
Journal NameCrop Science
Volume2016
Issue56
Year2016
Page(s)2926-2939
CitationJha A, Tar'an B, Stonehouse R, Warkentin T. Identification of QTLs Associated with Improved Resistance to Ascochyta Blight in an Interspecific Pea Recombinant Inbred Line Population. Crop Science. 2016; 2016(56):2926-2939.

Abstract

Ascochyta blight of pea (Pisum sp.), caused by Peyronellaea pinodes, often results in serious yield losses. Some accessions of Pisum fulvum Sibth. & Sm. previously showed high levels of resistance and could be used as sources of new resistance genes. The objectives of this study were to develop a single nucleotide polymorphism (SNP)-based linkage map and identify genomic regions associated with Ascochyta blight resistance. A population (PR-19) consisting of 144 recombinant inbred lines (RILs) developed from a cross between P651 (P. fulvum) and Alfetta (Pisum sativum L.) was used. These RILs were evaluated for Ascochyta blight resistance under field conditions in Saskatchewan, as well as under greenhouse conditions. The RILs were genotyped using an Illumina GoldenGate array panel of 1536 SNPs. A wide range of variation was observed in Ascochyta blight scores and other agronomic traits. Disease scores were positively correlated (P < 0.001) with lodging and were negatively correlated (P < 0.001) with days to flower, plant height, days to maturity, and grain yield. A total of 733 SNP markers were assigned to six linkage groups covering 682.1 cM of the pea genome. Nine quantitative trait loci (QTLs) were identified for Ascochyta blight resistance, which individually explained 7.5 to 28% of the total phenotypic variation. In addition, five QTLs each were identified for plant height, days to maturity, and grain yield, four QTLs for days to flower, and two QTLs for lodging. The QTL abIII-1 was consistent across locations and years, whereas abI-IV-2 was significant at both locations in 2014. These QTLs can be utilized for development of molecular markers associated with Ascochyta blight resistance.
Features
This publication contains information about 613 features:
Feature NameUniquenameType
PsC17980p70PsC17980p70genetic_marker
PsC908p622PsC908p622genetic_marker
PsC7612p685PsC7612p685genetic_marker
PsC9042p447PsC9042p447genetic_marker
PsC14648p140PsC14648p140genetic_marker
PsC894p666PsC894p666genetic_marker
PsC17285p91PsC17285p91genetic_marker
PsC11939p253PsC11939p253genetic_marker
PsC8484p165PsC8484p165genetic_marker
PsC4713p391PsC4713p391genetic_marker
PsC8033p314PsC8033p314genetic_marker
PsC4056p224PsC4056p224genetic_marker
PsC15220p84PsC15220p84genetic_marker
PsC15983p364PsC15983p364genetic_marker
PsC4635p485PsC4635p485genetic_marker
PsC4676p597PsC4676p597genetic_marker
PsC29303p361PsC29303p361genetic_marker
PsC16537p236PsC16537p236genetic_marker
PsC5078p112PsC5078p112genetic_marker
PsC6355p337PsC6355p337genetic_marker
PsC29684p358PsC29684p358genetic_marker
PsC3699p250PsC3699p250genetic_marker
PsC9680p423PsC9680p423genetic_marker
PsC11533p104PsC11533p104genetic_marker
PsC15424p247PsC15424p247genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Pea-Aschochyta_Blight_Jha_2016
Featuremaps
This publication contains information about 1 maps:
Map Name
Pea_P651_x_Alfetta_RIL
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
P651P651accession
AlfettaAlfettaaccession
P651_x_Alfetta_RILP651_x_Alfetta_RILpopulation
Properties
Additional details for this publication include:
Property NameValue
DOI10.2135/cropsci2016.01.0001
URLhttps://dl.sciencesocieties.org/publications/cs/abstracts/56/6/2926