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G3 (Bethesda, Md.)|March 20, 2017
Evaluating Methods of Updating Training Data in Long-Term Genomewide SelectionJeffrey L Neyhart, Tyler Tiede, Aaron J Lorenz, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|December 10, 2017
Identification, introgression, and molecular marker genetic analysis and selection of a highly effective novel oat crown rust resistance from diploid oat, Avena strigosaHoward W Rines, Marisa E Miller, Martin Carson, et al.The Plant Genome|October 5, 2020
Mapping crown rust resistance at multiple time points in elite oat germplasmIan G McNish, Cristiano M Zimmer, Alexander Q Susko, et al.G3 (Bethesda, Md.)|April 24, 2019
Genome-Wide Association Study and Pathway-Level Analysis of Kernel Color in MaizeBrenda F Owens, Deepu Mathew, Christine H Diepenbrock, et al.G3 (Bethesda, Md.)|June 5, 2013
Genome-wide association study and pathway-level analysis of tocochromanol levels in maize grainAlexander E Lipka, Michael A Gore, Maria Magallanes-Lundback, et al.Genetics|September 27, 2014
A foundation for provitamin A biofortification of maize: genome-wide association and genomic prediction models of carotenoid levelsBrenda F Owens, Alexander E Lipka, Maria Magallanes-Lundback, et al.The Plant Cell|October 4, 2017
Novel Loci Underlie Natural Variation in Vitamin E Levels in Maize GrainChristine H Diepenbrock, Catherine B Kandianis, Alexander E Lipka, et al.The Plant Cell|March 8, 2021
Eleven biosynthetic genes explain the majority of natural variation in carotenoid levels in maize grainChristine H Diepenbrock, Daniel C Ilut, Maria Magallanes-Lundback, et al.Pageof 1