World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
59
Citations
13181
World Ranking
1267
National Ranking
108

Best Publications

  • The ELF4 gene controls circadian rhythms and flowering time in Arabidopsis thaliana.

    Mark R Doyle;Seth J Davis;Ruth M Bastow;Ruth M Bastow;Harriet G McWatters

  • Soluble, highly fluorescent variants of green fluorescent protein (GFP) for use in higher plants.

    Seth J. Davis;Richard D. Vierstra

  • Bacteriophytochromes: phytochrome-like photoreceptors from nonphotosynthetic eubacteria.

    Seth J. Davis;Alexander V. Vener;Richard D. Vierstra

  • The molecular basis of temperature compensation in the Arabidopsis circadian clock

    Peter D. Gould;James C.W. Locke;Camille Larue;Megan M. Southern

  • Bacteriophytochromes are photochromic histidine kinases using a biliverdin chromophore

    Seong-Hee Bhoo;Seth J. Davis;Seth J. Davis;Joseph Walker;Baruch Karniol

  • EARLY FLOWERING4 Recruitment of EARLY FLOWERING3 in the Nucleus Sustains the Arabidopsis Circadian Clock

    Eva Herrero;Elsebeth Kolmos;Nora Bujdoso;Ye Yuan

  • Mutation at the circadian clock gene EARLY MATURITY 8 adapts domesticated barley (Hordeum vulgare) to short growing seasons

    S. Faure;A. S. Turner;D. Gruszka;V. Christodoulou

  • The Arabidopsis thaliana HY1 locus, required for phytochrome-chromophore biosynthesis, encodes a protein related to heme oxygenases

    Seth J. Davis;Jasmina Kurepa;Richard D. Vierstra

  • Ambient Thermometers in Plants: From Physiological Outputs towards Mechanisms of Thermal Sensing

    C. Robertson McClung;Seth J. Davis

  • Multiple phytohormones influence distinct parameters of the plant circadian clock

    Shigeru Hanano;Malgorzata A. Domagalska;Ferenc Nagy;Seth J. Davis

  • The TIME FOR COFFEE gene maintains the amplitude and timing of Arabidopsis circadian clocks.

    Anthony Hall;Ruth M. Bastow;Seth J. Davis;Shigeru Hanano

  • Protocol: Streamlined sub-protocols for floral-dip transformation and selection of transformants in Arabidopsis thaliana

    Amanda M Davis;Anthony Hall;Andrew J Millar;Chiarina Darrah

  • The DET1-COP1-HY5 Pathway Constitutes a Multipurpose Signaling Module Regulating Plant Photomorphogenesis and Thermomorphogenesis

    Carolin Delker;Louisa Sonntag;Geo Velikkakam James;Philipp Janitza

  • Integrating hormones into the floral‐transition pathway of Arabidopsis thaliana

    Seth J. Davis

  • Attenuation of brassinosteroid signaling enhances FLC expression and delays flowering

    Malgorzata A. Domagalska;Fritz M. Schomburg;Richard M. Amasino;Richard D. Vierstra

  • Mutant analyses define multiple roles for phytochrome C in Arabidopsis photomorphogenesis.

    Keara A. Franklin;Seth J. Davis;Wendy M. Stoddart;Richard D. Vierstra

  • TIME FOR COFFEE Represses Accumulation of the MYC2 Transcription Factor to Provide Time-of-Day Regulation of Jasmonate Signaling in Arabidopsis

    Jieun Shin;Katharina Heidrich;Alfredo Sanchez-Villarreal;Jane E. Parker

  • Genome expansion of Arabis alpina linked with retrotransposition and reduced symmetric DNA methylation

    Eva Maria Willing;Vimal Rawat;Terezie Mandáková;Florian Maumus

  • Genetic analyses of interactions among gibberellin, abscisic acid, and brassinosteroids in the control of flowering time in Arabidopsis thaliana

    Malgorzata A. Domagalska;Elzbieta Sarnowska;Ferenc Nagy;Ferenc Nagy;Seth J. Davis

  • Shining a light on the Arabidopsis circadian clock

    Rachael J. Oakenfull;Seth J. Davis

Frequent Co-Authors

Mingyu Liang
Mingyu Liang Medical College of Wisconsin

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