Publication Overview
TitleGenotyping-by-sequencing markers facilitate the identification of quantitative trait loci controlling resistance to Penicillium expansum in Malus sieversii
AuthorsNorelli J, Wisniewski M, Fazio G, Burchard E, Gutierrez B, Levin E, Droby S.
TypeJournal Article
Journal NamePLoS ONE
Volume12
Issue3
Year2017
Page(s)e0172949
CitationNorelli J, Wisniewski M, Fazio G, Burchard E, Gutierrez B, Levin E, Droby S.. Genotyping-by-sequencing markers facilitate the identification of quantitative trait loci controlling resistance to Penicillium expansum in Malus sieversii. PLoS ONE. 2017; 12(3):e0172949.

Abstract

Blue mold caused by Penicillium expansum is the most important postharvest disease of apple worldwide and results in significant financial losses. There are no defined sources of resistance to blue mold in domesticated apple. However, resistance has been described in wild Malus sieversii accessions, including plant introduction (PI)613981. The objective of the present study was to identify the genetic loci controlling resistance to blue mold in this accession. We describe the first quantitative trait loci (QTL) reported in the Rosaceae tribe Maleae conditioning resistance to P. expansum on genetic linkage group 3 (qM-Pe3.1) and linkage group 10 (qM-Pe10.1). These loci were identified in a M.× domestica ‘Royal Gala’ X M. sieversii PI613981 family (GMAL4593) based on blue mold lesion diameter seven days post-inoculation in mature, wounded apple fruit inoculated with P. expansum. Phenotypic analyses were conducted in 169 progeny over a four year period. PI613981 was the source of the resistance allele for qM-Pe3.1, a QTL with a major effect on blue mold resistance, accounting for 27.5% of the experimental variability. The QTL mapped from 67.3 to 74 cM on linkage group 3 of the GMAL4593 genetic linkage map. qM-Pe10.1 mapped from 73.6 to 81.8 cM on linkage group 10. It had less of an effect on resistance, accounting for 14% of the experimental variation. ‘Royal Gala’ was the primary contributor to the resistance effect of this QTL. However, resistance-associated alleles in both parents appeared to contribute to the least square mean blue mold lesion diameter in an additive manner at qM-Pe10.1. A GMAL4593 genetic linkage map composed of simple sequence repeats and ‘Golden Delicious’ single nucleotide polymorphism markers was able to detect qM-Pe10.1, but failed to detect qM-Pe3.1. The subsequent addition of genotyping-by-sequencing markers to the linkage map provided better coverage of the PI613981 genome on linkage group 3 and facilitated discovery of qM-Pe3.1. A DNA test for qM-Pe3.1 has been developed and is currently being evaluated for its ability to predict blue mold resistance in progeny segregating for qM-Pe3.1. Due to the long juvenility of apple, the availability of a DNA test to screen for the presence of qM-Pe3.1 at the seedling stage will greatly improve efficiency of breeding apple for blue mold resistance.
Features
This publication contains information about 444 features:
Feature NameUniquenameType
S9_29820988S9_29820988genetic_marker
S9_31836168S9_31836168genetic_marker
S9_31836215S9_31836215genetic_marker
S9_34056270S9_34056270genetic_marker
S9_34892329S9_34892329genetic_marker
S9_3552213S9_3552213genetic_marker
S9_3552233S9_3552233genetic_marker
S9_4617687S9_4617687genetic_marker
S9_4760533S9_4760533genetic_marker
S9_5969442S9_5969442genetic_marker
S9_6224555S9_6224555genetic_marker
S9_7983825S9_7983825genetic_marker
S9_8275756S9_8275756genetic_marker
S9_9547289S9_9547289genetic_marker
S9_9547310S9_9547310genetic_marker
S9_971024S9_971024genetic_marker
SNP_257956SNP_257956genetic_marker
resistance to Penicillium expansumqRPE.RGxPI6-LG3QTL
resistance to Penicillium expansumqRPE.RGxPI6-LG10QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Apple-Resistance_to_Penicillium_expansum-Norelli-2017
Featuremaps
This publication contains information about 1 maps:
Map Name
Apple-RGxPI6-F1
Stocks
This publication contains information about 2 stocks:
Stock NameUniquenameType
PI613981PI613981accession
Royal Gala_x_PI613981Royal Gala_x_PI613981population