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National Programs Plant Diseases
Red River Valley Agricultural Research Center
  • Development of Technological Advancement of Sclerotinia Management
  • The Requirement for Oxalate During Pathogenesis on Multiple Crops
  • Characterization of the Genetic Basis for Partial Resistance to Sclerotinia Sclerotiorum in Pea
  • Defining Critical Environmental and Biological Parameters Needed to Develop Sclerotinia Stem Rot on Canola
  • Characterization of the Reaction of Herbicide-Tolerant, Non Herbicide-Tolerant and Double Haploid Canola Lines to Sclerotinia Sclerotiorum
  • Expression Profiling of the Pea-Sclerotinia Sclerotiorum Interaction for Genomics-Assisted Breeding
  • Improved Resistance in Common Bean Through Multi-Site Screening and Pathogen Characterization Throughout Major Production Areas
  • Sclerotinia Diseases
  • Developing a Disease-Warning System for Sclerotinia Stem Rot on Canola
  • Enhancing Pathogen Detection and Crop Protection in Sugarbeet Using Molecular Technologies
  • Genetic Variation and Virulence of S. Sclerotiorum on Six Crops in the North Central Region
  • Candidate Genes for Fungal Resistance: Mapping and Snp Development for Lysm-Domain Encoding Genes in Soybean
  • Evaluation of Sunflower Hybrids and Germplasm for Resistance to Sclerotinia
  • Identification of Qtl for White Mold Resistance in Pinto Bean
  • Pathogen-Barley Interactions
  • Evaluation of Fungicide Alternatives for Control of Sclerotinia Stem Rot of Canola
  • On-Farm Validation of Cultural Practice Adjustments to Improve White Mold Management in Dry Bean Irrigation Systems
  • Characterization of Host-Pathogen Interactions in Barley and Wheat
  • Introgressing White Mold Resistance from the Secondary Gene Pool of Common Bean
  • Use of a Transformation System in Sunflower for Sclerotinia Resistance Studies
  • Transfer and Characterization of White Mold Resistance from P. Coccineus into P. Vulgaris
  • Genetic Resistance to White Mold Derived from Multiple Sources of Common Bean and Scarlet Runner Bean
  • Expression Profiling of the Pea-Sclerotinia Sclerotiorum Interaction for Genomics Assisted Breeding
  • Enhancing Soybean for Resistance to Sclerotinia Stem Rot

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    Last Modified: 11/25/2009
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