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BMC Genomics|March 4, 2020
Genetic diversity among cultivated beets (Beta vulgaris) assessed via population-based whole genome sequencesPaul Galewski, J Mitchell McGrathPhysiologia Plantarum|January 6, 2009
Functional differentiation of the sugar beet root system as indicator of developmental phase changeDaniele Trebbi, J Mitchell McGrathJournal of Agricultural and Food Chemistry|November 13, 2004
Fluorometric sucrose evaluation for sugar beetDaniele Trebbi, J Mitchell McGrathFrontiers in Plant Science|January 31, 2022
Select and Sequence of a Segregating Sugar Beet Population Provides Genomic Perspective of Host Resistance to Seedling Rhizoctonia solani InfectionPaul Galewski, Andrew Funk, J Mitchell McGrathThe Plant Journal : for Cell and Molecular Biology|May 26, 2018
Nucleotide-binding resistance gene signatures in sugar beet, insights from a new reference genomeAndrew Funk, Paul Galewski, J Mitchell McGrathTAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|July 2, 2003
Cultivar-specific seedling vigor and expression of a putative oxalate oxidase germin-like protein in sugar beet (Beta vulgaris L.)Benildo G de los Reyes, J Mitchell McGrathJournal of Plant Physiology|December 20, 2005
Sugarbeet sucrose synthase genes differ in organ-specific and developmental expressionDarrin M Haagenson, Karen L Klotz, J Mitchell McGrathFood Chemistry|August 24, 2014
Determination of sucrose content in sugar beet by portable visible and near-infrared spectroscopyLeiqing Pan, Qibing Zhu, Renfu Lu, et al.Plant Disease|October 27, 2021
Weather Conditions Conducive for the Early-Season Production and Dispersal of Cercospora beticola Spores in the Great Lakes Region of North AmericaDaniel M Bublitz, Linda E Hanson, J Mitchell McGrathTransgenic Research|April 7, 2007
Accumulation of vitamin E in potato (Solanum tuberosum) tubersElizabeth F Crowell, J Mitchell McGrath, David S DouchesPageof 2