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Leaf-rust resistance in rye (Secale cereale L.). 2. Genetic analysis and mapping of resistance genes Pr3, Pr4, and Pr5

GND
120391139
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, Institute of Agricultural Cropsa, Germany
Roux, Steffen;
GND
121322327
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, Institute of Agricultural Crops 3a, Germany
Hackauf, Bernd;
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, Institute of Agricultural Crops3a, Germany
Linz, A.;
GND
115742360
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, Institute of Agricultural Crops3a, Germany
Ruge, Brigitte;
GND
129618721
Zugehörigkeit
Inst. Plant Breed. Plant Protect., Martin-Luther-Univ. Halle-Wittenberg, Ludwig-Wucherer-Str. 2, Germany
Klocke, Bettina;
GND
1059146940
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, Institute of Agricultural Crops3a, Germany
Wehling, Peter

Three dominant resistance genes, Pr3, Pr4, and Pr5, were identified by genetic analysis of resistance to leaf rust in rye (Puccinia recondita f. sp. secalis). Each of the three genes confers resistance to a broad scale of single-pustule isolates (SPIs), but differences could be observed for specific Pr gene/SPI combinations. Resistance conferred by the three genes was effective in both detached-leaf tests carried out on seedlings and in field tests of adult plants. Molecular marker analysis mapped Pr3 to the centromeric region of rye chromosome arm 1RS, whereas Pr4 and Pr5 were assigned to the centromeric region of 1RL. Chromosomal localization and reaction patterns to specific SPIs provide evidence that the three Pr genes represent distinct and novel leaf-rust resistance genes in rye. The contributions of these genes to resistance breeding in rye and wheat are discussed. © Springer-Verlag 2004.

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