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Personal Information
MN
Robert Stupar
Home
Institution
University of Minnesota
Address
Dept of Agronomy & Plant Genetics
St Paul, MN 55108
Contact
Email: stup0004
at
umn.edu
Biography
Projects as Lead Investigator
Year
Project Name
2020
Discovering and (finally) understanding the functions of genes that underlie major agricultural traits in soybean
2020
Dissecting the Genetic and Molecular Basis of Abiotic Stress Tolerance in Fiskeby III Soybean for Advancing Breeding Outcomes
2020
New Biotechnology to improve and understand Soybean Traits
2019
Genomic Tools to Enable Trait Discovery and Deployment (1920-152-0131-B)
2019
Dissecting the genetic and molecular basis of abiotic stress tolerance in Fiskeby III soybean for advancing breeding outcomes (1920-172-0116-C)
2019
Discovering and finally understanding the functions of genes that underlie major agricultural traits in soybeans
2019
New biotechnology to improve and understand soybean traits
2018
Discovering and finally understanding the functions of genes that underlie major agricultural traits in soybean
2018
New biotechnology for soybean improvement
2017
New Biotechnology for Soybean Improvement
2016
Precision Genomics for Soybean Seed Composition (Year 2 of 1520-532-5601)
2016
Development of a Haploid-Induction System for Soybean (Year 3 of 1420-532-5693)
2016
Identification of Natural and Induced Mutations Causing Enhance Soybean Seed Composition and Stress Resistance (Year 2 of 1520-532-5603)
2015
Genetic transformation for soybean improvement
2015
Precision Genomics for Soybean Seed Composition (Year 1 of 1520-532-5601)
2015
Identification of Natural and Induced Mutations Causing Enhance Soybean Seed Composition and Stress Resistance (Year 1 of 1520-532-5603)
2015
Development of a Haploid-Induction System for Soybean (Year 2 of 1420-532-5693)
2014
Improvement of soybean seed composition and disease traits through genetical and functional genomics
2014
Genetic transformation for soybean improvement
2014
Precision Genomics for Soybean Seed Composition (Year 2 of 2506)
2014
Identification of Natural and Induced Mutations Causing Alterations in Soybean Seed Composition (Year 2 of 1320-532-5688)
2014
Development of a Haploid-Induction System for Soybean (Year 1 of 1420-532-5693)
2013
Precision Genomics for Soybean Seed Composition (Year 1 of 2506)
2013
Improvement of soybean seed protein and oil through genetical and functional genomics
2013
Genetic transformation for soybean improvement
2013
Development of a Haploid-Induction System for Soybean (Year 3 of 1293)
2013
Identification of Natural and Induced Mutations Causing Trait Alterations in Soybean (Year 1 of 1320-532-5688)
2012
Improvement of soybean seed protein and oil through genomics
2012
Genetic transformation for soybean improvement
2012
Identification of Gene Mutations Causing Alterations in Soybean Seed Composition (2288)
2012
Development of a Haploid-Induction System for Soybean (Year 2 of 1293)
2011
Development of a Haploid-Induction System for Soybean (Year 1 of 1293)
2011
Genetic transformation for soybean improvement
2011
Identification of Gene Mutations Causing Alterations in Soybean Seed Composition (Year 2 of 0288)
2010
Genetic transformation to investigate genes conferring tolerance to soybean iron deficiency chlorosis
2010
Identification of Gene Mutations Causing Alterations in Soybean Seed Composition (Year 1 of 0288)
2009
A candidate gene for maturity group and flowering time in soybeans
Projects as Co-Investigator
Year
Project Name
2019
New Breeding Technologies Applied to Meal (Year 1 of 1920-152-0120-A)
2018
Novel traits for soybean improvement through mutagenesis and germplasm collections
2018
Network Guided Modification of Soybean Meal Composition (Year 2 of 1720-152-0105)
2017
New Breeding Technologies Applied to Meal (Year 1 of 1720-152-0103)
2017
Network Guided Modification of Soybean Meal Composition (Year 1 of 1720-152-0105)
2016
Iron Deficiency Chlorosis: Getting to the Root of the Problem
2015
Iron deficiency chlorosis: Getting to the root of the problem
2014
Iron deficiency chlorosis: Getting to the root of the problem
2013
Iron deficiency chlorosis: Getting to the root of the problem
2012
Fast neutron soybean mutagenesis project: Characterization of mutant lines possessing unique compositional characteristics