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Identifying Fraxinus excelsior tolerant to ash dieback: Visual field monitoring versus a molecular marker
Authors:Audrius Menkis  Remigijus Bakys  Matilda Stein slund  Kateryna Davydenko  Malin Elfstrand  Jan Stenlid  Rimvydas Vasaitis
Institution:Audrius Menkis,Remigijus Bakys,Matilda Stein Åslund,Kateryna Davydenko,Malin Elfstrand,Jan Stenlid,Rimvydas Vasaitis
Abstract:Ash dieback (ADB) caused by the pathogen Hymenoscyphus fraxineus is the cause of massive mortality of Fraxinus spp. in Europe. The aim of this work was to check for the presence of the molecular marker for ADB tolerance in mapped healthy‐looking F. excelsior trees, and to compare its occurrence in trees exhibiting severe ADB symptoms. Monitoring of 135 healthy‐looking F. excelsior on the island of Gotland, Sweden, showed that after 3–4 years 99.3% of these trees had 0%–10% crown damage, thus remaining in a similar health condition as when first mapped. After 5–6 years, 94.7% of these trees had 0%–10% crown damage. Molecular analysis of leaf tissues from 40 of those showed the presence of the molecular marker in 34 (85.0%) trees, while it was absent in 6 (15.0%) trees. Analysis of leaf tissues from 40 severely ADB‐diseased trees showed the presence of the molecular marker in 17 (42.5%) trees, but its absence in 23 (57.5%) trees (p < .0001). The results demonstrated that monitoring of healthy‐looking F. excelsior is a simple and straightforward approach for the selection of presumably ADB‐tolerant ash for future breeding. The cDNA‐based molecular marker revealed moderate capacity on its own to discriminate between presumably ADB‐tolerant and susceptible F. excelsior genotypes.
Keywords:ash dieback  breeding for resistance  disease tolerance  Fraxinus  Hymenoscyphus fraxineus
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