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Evidence of a major QTL for fire blight resistance in the apple wild species Malus fusca

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13th ISHS International Fire Blight Workshop – Abstract Book | July 2013

13

th

International Fire Blight Workshop

2.-5. July 2013, Zürich, Switzerland

ETH Zürich Main Building, HG E7

Local Organizing Committee

Fabio Rezzonico (Agroscope Changins-Wädenswil, Wädenswil) Cesare Gessler (ETH, Institute of Integrative Biology, Zürich) Brion Duffy (Agroscope Changins-Wädenswil, Wädenswil) Katja Gruber (Agroscope Changins-Wädenswil, Wädenswil) Eduard Holliger (Agroscope Changins-Wädenswil, Wädenswil) Markus Kellerhals (Agroscope Changins-Wädenswil, Wädenswil) Cosima Pelludat (Agroscope Changins-Wädenswil, Wädenswil)

Important buildings 1 ETH main building 2 Zürich Hauptbahnhof 3 Bauschänzli

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Oral Presentations – Friday, July 5

58 13th ISHS International Fire Blight Workshop – Abstract Book | July 2013

Evidence of a major QTL for fire blight resistance in the apple wild species

Malus fusca

Ofere Emeriewen1,2, Andrzej Kilian3, Magda-Viola Hanke2, Mickael Malnoy1, Andreas Peil2

1

IASMA Research and Innovation Centre, Fondazione Edmund Mach, Via E. Mach, 1, 38010 San Michele all’Adige (TN), Italy; 2Julius Kühn-Institut (JKI), Federal Research Centre for Cultivated Plants, Institute for Breeding Research on Horticultural Fruit Crops, Pillnitzer Platz 3a, 01326 Pillnitz, Dresden, Germany; 3Triticarte P/L, PO Box 7141, Yarralumla, Canberra, ACT 2600, Australia

Fire blight is a common and very destructive disease affecting apple (Malus x domestica) and pear (Pyrus communis) productions. Caused by the bacteria Erwinia amylovora, its devastating economic effects ranges from losses in yield to severe damage or death of trees in the orchard, and in extreme cases loss of a whole orchard. The only reliable and effective management measure available to producers is the use of antibiotics. However, dependence on antibiotics treatment is not sustainable given such risks as the rapid selection of antibiotic-resistant populations and environmental-associated risks, which have led to their application being forbidden in many countries. Therefore the planting of fire blight-resistant cultivars seems to be the most probable strategy since it is eco-friendly. However until now, there is no fire blight resistant apple variety produced for the global market. Host resistance to fire blight in Malus is thought to be quantitatively controlled. Thus, several quantitative trait loci for resistance have been identified in some accessions of Malus spp. In this study, we explored a segregating population derived from a cross between the apple wild species Malus fusca and the Malus x domestica cultivar ‘Idared’. F1 progenies used for mapping were artificially inoculated with E. amylovora strain Ea

222_JKI at a concentration of 109 cfu/ml in 3 different years. Highest value of average percent lesion length (PLL) of all progenies was 23.1% in 2006 with 9.0 % as lowest in 2012. The averages of PLL of all replicates of each genotype were used as numerical traits for statistical analysis. A Kruskal-Wallis analysis, used to determine marker-phenotype association revealed two DArT markers (971000 and 970840) with the highest significance. The blast results of the sequences of both markers on the ‘Golden Delicious’ reference genome revealed their localisation on LG10. SSR markers were designed from the ‘Golden Delicious’ genome to replace these DArT markers and to determine the QTL region. Interval mapping revealed a strong QTL on LG10 explaining about 65% of the phenotypic variation. This is the first report on a fire blight resistance QTL of M. fusca and the only one located on LG10.

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