A new three-locus model for rootstock-induced dwarfing in apple revealed by genetic mapping of root bark percentage

Publication Overview
TitleA new three-locus model for rootstock-induced dwarfing in apple revealed by genetic mapping of root bark percentage
AuthorsHarrison N, Harrison RJ, Barber-Perez N, Cascant-Lopez E, Cobo-Medina M, Lipska M, Conde-Ruíz R, Brain P, Gregory PJ, Fernández-Fernández F
TypeJournal Article
Journal NameJournal of experimental botany
Volume67
Issue6
Year2016
Page(s)1871-1881
CitationHarrison N, Harrison RJ, Barber-Perez N, Cascant-Lopez E, Cobo-Medina M, Lipska M, Conde-Ruíz R, Brain P, Gregory PJ, Fernández-Fernández F. A new three-locus model for rootstock-induced dwarfing in apple revealed by genetic mapping of root bark percentage. Journal of experimental botany. 2016 Jan 29; 67(6):1871-1881.

Abstract

Rootstock-induced dwarfing of apple scions revolutionized global apple production during the twentieth century, leading to the development of modern intensive orchards. A high root bark percentage (the percentage of the whole root area constituted by root cortex) has previously been associated with rootstock-induced dwarfing in apple. In this study, the root bark percentage was measured in a full-sib family of ungrafted apple rootstocks and found to be under the control of three loci. Two quantitative trait loci (QTLs) for root bark percentage were found to co-localize to the same genomic regions on chromosome 5 and chromosome 11 previously identified as controlling dwarfing, Dw1 and Dw2, respectively. A third QTL was identified on chromosome 13 in a region that has not been previously associated with dwarfing. The development of closely linked sequence-tagged site markers improved the resolution of allelic classes, thereby allowing the detection of dominance and epistatic interactions between loci, with high root bark percentage only occurring in specific allelic combinations. In addition, we report a significant negative correlation between root bark percentage and stem diameter (an indicator of tree vigour), measured on a clonally propagated grafted subset of the mapping population. The demonstrated link between root bark percentage and rootstock-induced dwarfing of the scion leads us to propose a three-locus model that is able to explain levels of dwarfing from the dwarf 'M.27' to the semi-invigorating rootstock 'M.116'. Moreover, we suggest that the QTL on chromosome 13 (Rb3) might be analogous to a third dwarfing QTL, Dw3, which has not previously been identified.

Features
This publication contains information about 179 features:
Feature NameUniquenameType
RosBREEDSNP_SNP_TC_7129095_Lg11_01483_MAF20_45228_exon1RosBREEDSNP_SNP_TC_7129095_Lg11_01483_MAF20_45228_exon1genetic_marker
RosBREEDSNP_SNP_GA_9965260_Lg11_RosCOS3333_MAF30_MDP0000320465_exon1RosBREEDSNP_SNP_GA_9965260_Lg11_RosCOS3333_MAF30_MDP0000320465_exon1genetic_marker
RosBREEDSNP_SNP_TG_12154333_Lg11_00240_MAF50_MDP0000682327_exon1RosBREEDSNP_SNP_TG_12154333_Lg11_00240_MAF50_MDP0000682327_exon1genetic_marker
RosBREEDSNP_SNP_GA_12169230_Lg11_00240_MAF30_MDP0000433647_exon1RosBREEDSNP_SNP_GA_12169230_Lg11_00240_MAF30_MDP0000433647_exon1genetic_marker
RosBREEDSNP_SNP_AG_14888834_Lg11_RosCOS224_MAF10_1621338_exon15RosBREEDSNP_SNP_AG_14888834_Lg11_RosCOS224_MAF10_1621338_exon15genetic_marker
RosBREEDSNP_SNP_GA_32990120_Lg11_00566_MAF50_MDP0000376563_exon1RosBREEDSNP_SNP_GA_32990120_Lg11_00566_MAF50_MDP0000376563_exon1genetic_marker
RosBREEDSNP_SNP_CT_33428885_Lg11_02576_MAF20_706711_exon1RosBREEDSNP_SNP_CT_33428885_Lg11_02576_MAF20_706711_exon1genetic_marker
RosBREEDSNP_SNP_CA_35954489_Lg11_RosCOS372_MAF30_1656289_exon3RosBREEDSNP_SNP_CA_35954489_Lg11_RosCOS372_MAF30_1656289_exon3genetic_marker
RosBREEDSNP_SNP_TC_36934343_Lg11_RosCOS1511_MAF30_1641301_exon1RosBREEDSNP_SNP_TC_36934343_Lg11_RosCOS1511_MAF30_1641301_exon1genetic_marker
RosBREEDSNP_SNP_TC_34055_Lg13_snpEB124348_MAF20_901801_exon1RosBREEDSNP_SNP_TC_34055_Lg13_snpEB124348_MAF20_901801_exon1genetic_marker
RosBREEDSNP_SNP_TG_3850600_Lg13_00565_MAF30_1674510_exon2RosBREEDSNP_SNP_TG_3850600_Lg13_00565_MAF30_1674510_exon2genetic_marker
RosBREEDSNP_SNP_CT_4574491_Lg13_RosCOS841_MAF20_1660629_exon1RosBREEDSNP_SNP_CT_4574491_Lg13_RosCOS841_MAF20_1660629_exon1genetic_marker
RosBREEDSNP_SNP_TC_4993103_Lg13_02336_MAF50_1659833_exon6RosBREEDSNP_SNP_TC_4993103_Lg13_02336_MAF50_1659833_exon6genetic_marker
RosBREEDSNP_SNP_AG_5611802_Lg13_RosCOS1918_MAF40_668899_exon1RosBREEDSNP_SNP_AG_5611802_Lg13_RosCOS1918_MAF40_668899_exon1genetic_marker
RosBREEDSNP_SNP_AC_7144285_Lg13_00128_MAF30_MDP0000846055_exon4RosBREEDSNP_SNP_AC_7144285_Lg13_00128_MAF30_MDP0000846055_exon4genetic_marker
RosBREEDSNP_SNP_CA_7606033_Lg13_02124_MAF20_1677651_exon1RosBREEDSNP_SNP_CA_7606033_Lg13_02124_MAF20_1677651_exon1genetic_marker
RosBREEDSNP_SNP_CT_8619897_Lg13_RosCOS2067_MAF40_1650509_exon1RosBREEDSNP_SNP_CT_8619897_Lg13_RosCOS2067_MAF40_1650509_exon1genetic_marker
RosBREEDSNP_SNP_TG_15758529_Lg13_snpMalD1_MAF40_1639538_exon1RosBREEDSNP_SNP_TG_15758529_Lg13_snpMalD1_MAF40_1639538_exon1genetic_marker
GDsnp01844GDsnp01844genetic_marker
RosBREEDSNP_SNP_AC_19805064_Lg13_01334_MAF50_356181_exon1RosBREEDSNP_SNP_AC_19805064_Lg13_01334_MAF50_356181_exon1genetic_marker
RosBREEDSNP_SNP_AC_20353369_Lg13_02063_MAF50_160796_exon1RosBREEDSNP_SNP_AC_20353369_Lg13_02063_MAF50_160796_exon1genetic_marker
RosBREEDSNP_SNP_GA_6188555_Lg14_02706_MAF50_MDP0000173208_exon10RosBREEDSNP_SNP_GA_6188555_Lg14_02706_MAF50_MDP0000173208_exon10genetic_marker
RosBREEDSNP_SNP_AG_26943295_Lg14_02079_MAF50_160202_exon1RosBREEDSNP_SNP_AG_26943295_Lg14_02079_MAF50_160202_exon1genetic_marker
RosBREEDSNP_SNP_GA_7287244_Lg17_266160_MAF20_266160_exon1RosBREEDSNP_SNP_GA_7287244_Lg17_266160_MAF20_266160_exon1genetic_marker
GDsnp02457GDsnp02457genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Apple-Dwarfing-Harrison-2016
Featuremaps
This publication contains information about 1 maps:
Map Name
Apple-M27xM116-2016
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
M27M27accession
M116M116accession
M27_x_M116M27_x_M116population