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G3 (Bethesda, Md.)|August 21, 2020
Maize Introgression Library Provides Evidence for the Involvement of <i>liguleless1</i> in Resistance to Northern Leaf BlightJudith M Kolkman, Josh Strable, Kate Harline, et al.The New Phytologist|September 9, 2014
Ontogeny of the sheathing leaf base in maize (Zea mays)Robyn Johnston, Samuel Leiboff, Michael J ScanlonThe New Phytologist|June 26, 2024
Genetic analyses of embryo homology and ontogeny in the model grass Zea mays subsp. maysHao Wu, Ruqiang Zhang, Michael J ScanlonNucleic Acids Research|March 14, 2015
Evolutionary patterns of DNA base composition and correlation to polymorphisms in DNA repair systemsXianran Li, Michael J Scanlon, Jianming YuThe Plant Cell|December 7, 2002
Empty pericarp2 encodes a negative regulator of the heat shock response and is required for maize embryogenesisSuneng Fu, Robert Meeley, Michael J ScanlonCurrent Biology : CB|October 8, 2024
Plant development: The role of SPL9 in age-dependent sculpting of leaf shapeRichie Eve G Ragas, Michael J ScanlonThe Plant Cell|July 13, 2017
Maize <i>YABBY</i> Genes <i>drooping leaf1</i> and <i>drooping leaf2</i> Regulate Plant ArchitectureJosh Strable, Jason G Wallace, Erica Unger-Wallace, et al.The New Phytologist|August 2, 2020
The FUSED LEAVES1-ADHERENT1 regulatory module is required for maize cuticle development and organ separationXue Liu, Richard Bourgault, Mary Galli, et al.Current Opinion in Plant Biology|October 29, 2021
The arches and spandrels of maize domestication, adaptation, and improvementMaría Jazmín Abraham-Juárez, Allison C Barnes, Alejandro Aragón-Raygoza, et al.Nature Communications|March 3, 2025
Regulatory variation controlling architectural pleiotropy in maizeEdoardo Bertolini, Brian R Rice, Max Braud, et al.Pageof 12