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The Plant Genome|December 19, 2022
Brown midrib mutant and genome-wide association analysis uncover lignin genes for disease resistance in maizeJudith M Kolkman, Danilo E Moreta, Ace Repka, et al.Genetics|August 30, 2008
Selection mapping of loci for quantitative disease resistance in a diverse maize populationRandall J Wisser, Seth C Murray, Judith M Kolkman, et al.Genetics|July 11, 2014
Unraveling genomic complexity at a quantitative disease resistance locus in maizeTiffany M Jamann, Jesse A Poland, Judith M Kolkman, et al.Plant Physiology|February 9, 2008
Deregulation of maize C4 photosynthetic development in a mesophyll cell-defective mutantSarah Covshoff, Wojciech Majeran, Peng Liu, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|February 6, 2016
A remorin gene is implicated in quantitative disease resistance in maizeTiffany M Jamann, Xingyu Luo, Laura Morales, et al.G3 (Bethesda, Md.)|August 21, 2020
Maize Introgression Library Provides Evidence for the Involvement of liguleless1 in Resistance to Northern Leaf BlightJudith M Kolkman, Josh Strable, Kate Harline, et al.Phytopathology|October 11, 2012
Multivariate mixed linear model analysis of longitudinal data: an information-rich statistical technique for analyzing plant disease resistanceYogasudha Veturi, Kristen Kump, Ellie Walsh, et al.Proceedings of the National Academy of Sciences of the United States of America|April 15, 2011
Multivariate analysis of maize disease resistances suggests a pleiotropic genetic basis and implicates a GST geneRandall J Wisser, Judith M Kolkman, Megan E Patzoldt, et al.Genetics|July 31, 2007
Single nucleotide polymorphisms and linkage disequilibrium in sunflowerJudith M Kolkman, Simon T Berry, Alberto J Leon, et al.G3 (Bethesda, Md.)|November 22, 2018
Using Maize Chromosome Segment Substitution Line Populations for the Identification of Loci Associated with Multiple Disease ResistanceLuis O Lopez-Zuniga, Petra Wolters, Scott Davis, et al.Pageof 2