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Linkage of random amplified polymorphic DNA markers to downy mildew resistance in cucumber (Cucumis sativus L.)
Authors:Thomas Horejsi  Jack E. Staub  Claude Thomas
Affiliation:(1) Student University of Wisconsin Madison, Monsanto, 634 East Lincoln Way, Ames, IA, 50010, U.S.A.;(2) USDA-ARS, Vegetable Crops Unit, Department of Horticulture, 1575 Linden Dr., University of Wisconsin, Madison, WI, 53706 U.S.A.;(3) USDA-ARS, Vegetable Crop Laboratory, Charleston, SC, 29407
Abstract:Marker assisted selection (MAS) may improve the efficiency of breeding downy mildew resistant cucumber cultivars. A study was conducted to identify random amplified polymorphic DNA (RAPD) markers linked to the downy mildew resistance gene (dm) which would be suitable for MAS. A total of 145 F3 families from two populations (55 from the WI 1983G × Straight 8 population and 90 from the Zudm1 × Straight 8 population) were evaluated over five locations in North America and Europe. Resistant and susceptible F3 families were identified and mean family resistance ratings were used to type individual F2 plants. No evidence for race differences in the pathogen (Psuedoperonospora cubensis (Berk. & Curt.) Rostow) between North America and Europe was found. Phenotypic correlations between locations ranged from 0.3 to 0.7. Of the 135 polymorphic RAPD markers identified from 960 primers, five were linked to dm - G14800, X151100, AS5800, BC5191100, and BC5261000. In the WI 1983G × Straight 8 population, G14800 was linked to dm at 16.5 cm, AS5800 at 32.8 cm, BC5191100 at 9.9 cm, and BC5261000 at 19.2 cm. In the Zudm1 ×Straight 8 population, G14800 was linked at 20.9 cm, X151100at 14.8 cm, AS5800 at 24.8 cm, and BC526_1000 at 32.9 cm. MarkersG14800 and BC5191100 were linked in repulsion to the dm allele, and X151100, AS5800, and BC5261000 were linked in coupling phase. These genetic markers may be exploited to develop an efficient MAS strategy for breeding resistant cucumber cultivars. This revised version was published online in July 2006 with corrections to the Cover Date.
Keywords:genetic markers  marker-assisted selection  multiple location analysis  RAPD
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