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Mapping of quantitative adult plant field resistance to leaf rust and stripe rust in two European winter wheat populations reveals co-location of three QTL conferring resistance to both rust pathogens

Zugehörigkeit
Dept. IFA-Tulln, BOKU-University of Natural Resources and Life Sciences Vienna, Konrad Lorenz Str. 20, 3430 Tulln, Austria
Buerstmayr, Maria;
Zugehörigkeit
Inst. f. Landschaftsentwicklung, Erholungs- und Naturschutzplanung, Peter Jordan-Str. 65, 1180 Wien, Austria
Matiasch, Lydia;
Zugehörigkeit
Agroscope, Changins-Wädenswil, ACW, 1260 Nyon, Switzerland
Mascher, Fabio;
Zugehörigkeit
Agric. Res. Inst. Hung. Acad. Sci., 2462 Martonvásár, Hungary
Vida, Gyula;
Zugehörigkeit
Natl. Agric. Res. Dev. Inst., Fundulea 915200, Romania
Ittu, Marianna;
Zugehörigkeit
Bioplante, 3 Rue Florimond Desprez, BP41, 59242 Cappelle-en-Pévèle, France
Robert, Olivier;
Zugehörigkeit
RAGT Seeds, Grange Road, Ickleton Essex, CB10 1TA, UK
Holdgate, Sarah;
GND
1058937626
Zugehörigkeit
Julius Kühn Institute (JKI), Institut für Pflanzenschutz in Ackerbau und Grünland, Kleinmachnow, Germany
Flath, Kerstin;
Zugehörigkeit
Saatzucht Donau, 4981 Reichersberg, Austria
Neumayer, Anton;
Zugehörigkeit
Dept. IFA-Tulln, BOKU-University of Natural Resources and Life Sciences Vienna, Konrad Lorenz Str. 20, 3430 Tulln, Austria
Buerstmayr, Hermann

The rusts of wheat (Puccinia spp.) are destructive fungal wheat diseases. The deployment of resistant cultivars plays a central role in integrated rust disease management. Durability of resistance would be preferred, but is difficult to analyse. The Austrian winter wheat cultivar Capo was released in the 1989 and grown on a large acreage during more than two decades and maintained a good level of quantitative leaf rust and stripe rust resistance. Two bi-parental mapping populations: Capo × Arina and Capo × Furore were tested in multiple environments for severity of leaf rust and stripe rust at the adult plant stage in replicated field experiments. Quantitative trait loci associated with leaf rust and stripe rust severity were mapped using DArT and SSR markers. Five QTL were detected in multiple environments associated with resistance to leaf rust designated as QLr.ifa-2AL, QLr.ifa-2BL, QLr.ifa-2BS, QLr.ifa-3BS, and QLr.ifa-5BL, and five for resistance to stripe rust QYr.ifa-2AL, QYr.ifa-2BL, QYr.ifa-3AS, QYr.ifa-3BS, and QYr.ifa-5A. For all QTL apart from two (QYr.ifa-3AS, QLr.ifa-5BL) Capo contributed the resistance improving allele. The leaf rust and stripe rust resistance QTL on 2AL, 2BL and 3BS mapped to the same chromosome positions, indicating either closely linked genes or pleiotropic gene action. These three multiple disease resistance QTL (QLr.ifa-2AL/QYr.ifa-2AL, QLr.ifa.2BL/QYr.ifa-2BL, QLr.ifa-3BS/QYr.ifa.3BS) potentially contribute novel resistance sources for stripe rust and leaf rust. The long-lasting resistance of Capo apparently rests upon a combination of several genes. The described germplasm, QTL and markers are applicable for simultaneous resistance improvement against leaf rust and stripe rust.

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