World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
38
Citations
7642
World Ranking
4296
National Ranking
185

Best Publications

  • Multiple wheat genomes reveal global variation in modern breeding.

    Sean Walkowiak;Sean Walkowiak;Liangliang Gao;Cecile Monat;Georg Haberer

  • The Arabidopsis NPR1 Disease Resistance Protein Is a Novel Cofactor That Confers Redox Regulation of DNA Binding Activity to the Basic Domain/Leucine Zipper Transcription Factor TGA1

    Unknown

  • The Arabidopsis NPR1/NIM1 Protein Enhances the DNA Binding Activity of a Subgroup of the TGA Family of bZIP Transcription Factors

    Unknown

  • The tomato transcription factor Pti4 regulates defense-related gene expression via GCC box and non-GCC box cis elements.

    Suma Chakravarthy;Robert P. Tuori;Mark D. D'Ascenzo;Pierre R. Fobert

  • The Coactivator Function of Arabidopsis NPR1 Requires the Core of Its BTB/POZ Domain and the Oxidation of C-Terminal Cysteines

    Unknown

  • A "Whirly" transcription factor is required for salicylic acid-dependent disease resistance in Arabidopsis.

    Darrell Desveaux;Darrell Desveaux;Rajagopal Subramaniam;Charles Després;Jean Nicholas Mess

  • The expression of D-cyclin genes defines distinct developmental zones in snapdragon apical meristems and is locally regulated by the Cycloidea gene.

    Valérie Gaudin;Patricia A. Lunness;Pierre R. Fobert;Matthew Towers

  • Arabidopsis Basic Leucine-Zipper Transcription Factors TGA9 and TGA10 Interact with Floral Glutaredoxins ROXY1 and ROXY2 and Are Redundantly Required for Anther Development

    Unknown

  • Patterns of cell division revealed by transcriptional regulation of genes during the cell cycle in plants.

    P. R. Fobert;E. S. Coen;G. J. P. Murphy;J. H. Doonan

  • The BTB/POZ Domain of the Arabidopsis Disease Resistance Protein NPR1 Interacts with the Repression Domain of TGA2 to Negate Its Function

    Unknown

  • Characterization of an AGAMOUS homologue from the conifer black spruce (Picea mariana) that produces floral homeotic conversions when expressed in Arabidopsis.

    Robert Rutledge;Sharon Regan;Olivier Nicolas;Pierre Fobert

  • Redox control of systemic acquired resistance.

    Unknown

  • An Arabidopsis NPR1‐like gene, NPR4, is required for disease resistance

    Guosheng Liu;Eric B. Holub;Jose M. Alonso;Jose M. Alonso;Joseph R. Ecker

  • Distinct classes of cdc2-related genes are differentially expressed during the cell division cycle in plants.

    Pierre R. Fobert;Valerie Gaudin;Patricia Lunness;Enrico S. Coen

  • T-DNA tagging of a seed coat specific cryptic promoter in tobacco

    Pierre R. Fobert;Helene Labbe;John Cosmopoulos;Sylvia Gottlob-McHugh

  • The Arabidopsis Cdc2a-interacting protein ICK2 is structurally related to ICK1 and is a potent inhibitor of cyclin-dependent kinase activity in vitro.

    Helen Lui;Hong Wang;Catherine DeLong;Larry C. Fowke

  • Long distance movement of DIR1 and investigation of the role of DIR1-like during systemic acquired resistance in Arabidopsis.

    Unknown

  • Arabidopsis Clade I TGA Transcription Factors Regulate Plant Defenses in an NPR1-Independent Fashion

    Heather L. Shearer;Yu Ti Cheng;Lipu Wang;Jinman Liu

  • A novel role for protein farnesylation in plant innate immunity.

    Sandra Goritschnig;Tabea Weihmann;Yuelin Zhang;Pierre Fobert

  • Integrated transcriptome and hormone profiling highlight the role of multiple phytohormone pathways in wheat resistance against fusarium head blight.

    Unknown

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