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Plant Physiology|November 18, 2021
An in situ sequencing approach maps PLASTOCHRON1 at the boundary between indeterminate and determinate cellsReinout Laureyns, Jessica Joossens, Denia Herwegh, et al.Development (Cambridge, England)|September 30, 2020
Plant homeodomain proteins provide a mechanism for how leaves grow widePhillip A Conklin, Robyn Johnston, Brianne R Conlon, et al.Plant Physiology|May 22, 2026
Cytokinin histidine kinase receptors regulate multiple aspects of rice growth and developmentEva Mei Shouse, Alejandro Aragón-Raygoza, Emily J Tallerday, et al.Plant, Cell & Environment|December 23, 2018
Diverse Sorghum bicolor accessions show marked variation in growth and transcriptional responses to arbuscular mycorrhizal fungiStephanie J Watts-Williams, Bryan D Emmett, Veronique Levesque-Tremblay, et al.Plant Signaling & Behavior|July 8, 2020
A maize LIPID TRANSFER PROTEIN may bridge the gap between PHYTOCHROME-mediated light signaling and cuticle biosynthesisPengfei Qiao, Richard Bourgault, Marc Mohammadi, et al.Plant Physiology|December 17, 2008
Tissue specificity and evolution of meristematic WOX3 functionRena Shimizu, Jiabing Ji, Eric Kelsey, et al.The Plant Cell|December 18, 2014
Transcriptomic analyses indicate that maize ligule development recapitulates gene expression patterns that occur during lateral organ initiationRobyn Johnston, Minghui Wang, Qi Sun, et al.Plos One|April 12, 2014
Transcriptomic analysis of Petunia hybrida in response to salt stress using high throughput RNA sequencingGonzalo H Villarino, Aureliano Bombarely, James J Giovannoni, et al.Plos Genetics|November 26, 2009
Loss of RNA-dependent RNA polymerase 2 (RDR2) function causes widespread and unexpected changes in the expression of transposons, genes, and 24-nt small RNAsYi Jia, Damon R Lisch, Kazuhiro Ohtsu, et al.Genes|August 4, 2017
Dissecting Tissue-Specific Transcriptomic Responses from Leaf and Roots under Salt Stress in Petunia hybrida MitchellGonzalo H Villarino, Qiwen Hu, Michael J Scanlon, et al.Pageof 12