Construction of an integrated linkage map and trait dissection for bacterial blight resistance in field pea (Pisum sativum L.)

Publication Overview
TitleConstruction of an integrated linkage map and trait dissection for bacterial blight resistance in field pea (Pisum sativum L.)
AuthorsSudheesh S, Rodda M, Kennedy P, Verma P, Leonforte A, Cogan NOI, Materne M, Forster JW, Kaur S
TypeJournal Article
Journal NameMolecular Breeding
Volume35
Year2015
Page(s)185
CitationSudheesh S, Rodda M, Kennedy P, Verma P, Leonforte A, Cogan NOI, Materne M, Forster JW, Kaur S. Construction of an integrated linkage map and trait dissection for bacterial blight resistance in field pea (Pisum sativum L.). 2015; 35:185.

Abstract

Field pea (Pisum sativum L.) is a grain legume crop that is cultivated for either human or livestock consumption. Development of varieties adapted to damaging abiotic and biotic stresses is a major objective for field pea breeding. Bacterial blight is a serious disease caused by the pathogenic agents Pseudomonas syringae pv. syringae and Pseudomonas syringae pv. pisi. A recombinant inbred line (RIL) genetic mapping population was generated by crossing the susceptible genotype Kaspa to the resistant genotype PBA Oura. Previously described sets of single-nucleotide polymorphism and simple sequence repeat markers were assigned to a genetic linkage map of the Kaspa × PBA Oura population, which contained 358 markers spanning 1070 cM with an average marker density of 1 locus per 3.0 cM. Combination with multiple previously published maps (including that of Kaspa × Parafield) subsequently generated an integrated structure with much higher marker density of 1 locus per 0.85 cM. The Kaspa × PBA Oura and Kaspa × Parafield RILs were screened at the seedling stage for resistance to both pathovars. Totals of four and two QTLs for resistance to infection by P. syringae pv. syringae were detected in the Kaspa × Parafield and Kaspa × PBA Oura populations, respectively. A single common genomic region associated with P. syringae pv. pisi resistance was identified in both mapping populations. To integrate information on bacterial blight resistance from various QTL mapping studies, the relevant regions were extrapolated on to the integrated map through use of common flanking markers. The resources generated in this study will support map enhancement, identification of marker-trait associations, genomics-assisted breeding, map-based gene isolation and comparative genetics.
Features
This publication contains information about 3,014 features:
Feature NameUniquenameType
PsC9230p364PsC9230p364genetic_marker
SNP_100000364_PsC11241p406SNP_100000364_PsC11241p406genetic_marker
Ps000866Ps000866genetic_marker
Ps000977Ps000977genetic_marker
PsC17315p286PsC17315p286genetic_marker
Ps000966Ps000966genetic_marker
Ps001842Ps001842genetic_marker
PsC11765p81PsC11765p81genetic_marker
PsC5200p423PsC5200p423genetic_marker
Ps000996Ps000996genetic_marker
Ps001796Ps001796genetic_marker
PsC18284p344PsC18284p344genetic_marker
Ps001036Ps001036genetic_marker
PsC27413p94_Ps000986PsC27413p94_Ps000986genetic_marker
SNP_100000912SNP_100000912genetic_marker
Ps000937Ps000937genetic_marker
Ps000944Ps000944genetic_marker
Ps001120Ps001120genetic_marker
AA369AA369genetic_marker
Ps001089Ps001089genetic_marker
PsC10628p120PsC10628p120genetic_marker
PsC17880p349PsC17880p349genetic_marker
PsC3585p445_Ps000822PsC3585p445_Ps000822genetic_marker
SNP_100000331SNP_100000331genetic_marker
PsC18582p238PsC18582p238genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Pea-Bacterial_Blight_Resistance-Sudheesh-2015
Featuremaps
This publication contains information about 3 maps:
Map Name
Pea-Kaspa_x_PBA Oura-RIL
Pea-Integrated_Map-Sudheesh-2015
Pea-Composite_Map-Sudheesh-2015
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
KaspaKaspaaccession
PBA OuraPBA Ouraaccession
Kaspa_x_PBA OuraKaspa_x_PBA Ourapopulation
Properties
Additional details for this publication include:
Property NameValue
URLhttp://link.springer.com/article/10.1007/s11032-015-0376-4