One hundred and eighty six F 1 plants from a 'Regent' 9 'RedGlobe' cross were used to generate a partial linkage map with 139 microsatellite markers spanning all 19 chromosomes. Phenotypic scores for downy mildew, taken over two years, confirmed a major resistance QTL (Rpv3) against downy mildew in the interval VVIN16-cjvh to UDV108 on chromosome 18 of 'Regent'. This locus explained up to 62 % of the phenotypic variance observed. Additionally a putative minor downy mildew resistance locus was observed on chromosome 1 in one season. A major resistance locus against powdery mildew (Ren3) was also identified on chromosome 15 of 'Regent' in the interval UDV116 to VChr15CenGen06. This study established the efficacy of and validated the 'Regent'-derived downy and powdery mildew major resistance genes/QTL under South African conditions. Closely linked SSR markers for marker-assisted selection and gene pyramiding strategies were identified.
This study aimed to validate the effectiveness and to genetically characterise the fungal disease resistance genes of 'Kishmish Vatkana' and 'Villard Blanc' in South Africa using microsatellite (SSR) markers and a Quantitative Trait Loci (QTL) approach. An F 1 'Sunred Seedless' × 'Kishmish Vatkana' cross was used to generate a partial linkage map for chromosome 13 known to harbour the Ren1 powdery mildew locus of 'Kishmish Vatkana'. The effectiveness of this locus was validated, explaining between 44.8% and 57.7% of the observed phenotypic variance. An F 1 'Villard Blanc' × 'G1-6604' cross was used to generate partial linkage maps for chromosomes 15 and 18, reported to harbour fungal resistance genes of 'Villard Blanc'. The powdery mildew QTL (Ren3) was validated on chromosome 15 of 'Villard Blanc', which explained between 18.9% and 23.9% of the phenotypic variance observed. The downy mildew resistance QTL on chromosome 18 (Rpv3) of 'Villard Blanc' was also confirmed, and it explained between 19.1% and 21.2% of the phenotypic variance observed. This molecular information and individual sources of resistance have already been implemented in the marker-assisted selection (MAS) and gene pyramiding efforts of the table grape breeding program of the Agricultural Research Council (ARC) Infruitec-Nietvoorbij.
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