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Genetic mapping,marker assisted selection and allelic relationships for the Pu6 gene conferring rust resistance in sunflower
Authors:Mariano Bulos  Pablo Nicolas Vergani  Emiliano Altieri
Affiliation:1.Biotechnology Department, Nidera S.A., Casilla de Correo 6, CP.: 2600 Venado Tuerto, Santa Fe, Argentina;2.Sunflower Breeding Program, Nidera S.A., Casilla de Correo 6, CP.: 2600 Venado Tuerto, Santa Fe, Argentina
Abstract:Rust resistance in the sunflower line P386 is controlled by Pu6, a gene which was reported to segregate independently from other rust resistant genes, such as R4. The objectives of this work were to map Pu6, to provide and validate molecular tools for its identification, and to determine the linkage relationship of Pu6 and R4. Genetic mapping of Pu6 with six markers covered 24.8 cM of genetic distance on the lower end of linkage Group 13 of the sunflower consensus map. The marker most closely linked to Pu6 was ORS316 at 2.5 cM in the distal position. ORS316 presented five alleles when was assayed with a representative set of resistant and susceptible lines. Allelism test between Pu6 and R4 indicated that both genes are linked at a genetic distance of 6.25 cM. This is the first confirmation based on an allelism test that at least two members of the Radv/R4/R11/ R13a/R13b/Pu6 cluster of genes are at different loci. A fine elucidation of the architecture of this complex locus will allow designing and constructing completely new genomic regions combining genes from different resistant sources and the elimination of the linkage drag around each resistant gene.
Keywords:Helianthus annuus   Puccinia helianthi   disease resistance   anticipatory breeding   complex locus   marker assisted selection   molecular breeding
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