World's Best Scientists 2026 revealed!
Matthew A. Hannah

Matthew A. Hannah

D-Index & Metrics

Plant Science and Agronomy

D-Index
35
Citations
6565
World Ranking
5035
National Ranking
310

Best Publications

  • A global survey of gene regulation during cold acclimation in Arabidopsis thaliana

    Matthew A Hannah;Arnd G Heyer;Dirk K Hincha

  • Natural Genetic Variation of Freezing Tolerance in Arabidopsis

    Matthew A. Hannah;Dana Wiese;Susanne Freund;Oliver Fiehn

  • Genome-wide reprogramming of regulatory networks, transport, cell wall and membrane biogenesis during arbuscular mycorrhizal symbiosis in Lotus japonicus.

    Mike Guether;Raffaella Balestrini;Matthew Hannah;Ji He

  • High‐density kinetic analysis of the metabolomic and transcriptomic response of Arabidopsis to eight environmental conditions

    Camila Caldana;Thomas Degenkolbe;Alvaro Cuadros-Inostroza;Sebastian Klie

  • Disruption of the Arabidopsis circadian clock is responsible for extensive variation in the cold-responsive transcriptome

    Zuzanna Bieniawska;Carmen Espinoza;Armin Schlereth;Ronan Sulpice

  • Response to CO 2 Enrichment in 27 Herbaceous Species

    Unknown

  • IAA-Ala Resistant3, an Evolutionarily Conserved Target of miR167, Mediates Arabidopsis Root Architecture Changes during High Osmotic Stress

    Natsuko Kinoshita;Natsuko Kinoshita;Huan Wang;Hiroyuki Kasahara;Jun Liu

  • Integrative functional genomics of salt acclimatization in the model legume Lotus japonicus

    Diego H. Sanchez;Felix Lippold;Henning Redestig;Matthew A. Hannah

  • Probing the Reproducibility of Leaf Growth and Molecular Phenotypes: A Comparison of Three Arabidopsis Accessions Cultivated in Ten Laboratories

    Catherine Massonnet;Denis Vile;Juliette Fabre;Matthew A. Hannah

  • The DOF transcription factor OBP1 is involved in cell cycle regulation in Arabidopsis thaliana.

    Aleksandra Skirycz;Amandine Radziejwoski;Wolfgang Busch;Matthew A. Hannah

  • Interaction with Diurnal and Circadian Regulation Results in Dynamic Metabolic and Transcriptional Changes during Cold Acclimation in Arabidopsis

    Carmen Espinoza;Thomas Degenkolbe;Camila Caldana;Ellen Zuther

  • Dissection of symbiosis and organ development by integrated transcriptome analysis of lotus japonicus mutant and wild-type plants.

    Niels Høgslund;Simona Radutoiu;Lene Krusell;Vera Voroshilova

  • Chronoculture, harnessing the circadian clock to improve crop yield and sustainability

    Gareth Steed;Dora Cano Ramirez;Matthew A. Hannah;Alex A. R. Webb

  • Circadian control of abscisic acid biosynthesis and signalling pathways revealed by genome-wide analysis of LHY binding targets.

    Sally Adams;Jack Grundy;Jack Grundy;Siren R. Veflingstad;Nigel P. Dyer

  • Analysis of short‐term changes in the Arabidopsis thaliana glycerolipidome in response to temperature and light

    Asdrubal Burgos;Jedrzej Szymanski;Bettina Seiwert;Thomas Degenkolbe

  • Comparative functional genomics of salt stress in related model and cultivated plants identifies and overcomes limitations to translational genomics.

    Diego H. Sanchez;Fernando Luis Pieckenstain;Jedrzey Szymanski;Alexander Erban

  • The response and recovery of the Arabidopsis thaliana transcriptome to phosphate starvation.

    Jongchan Woo;Cameron Ross MacPherson;Cameron Ross MacPherson;Jun Liu;Huan Wang;Huan Wang

  • Low glutathione regulates gene expression and the redox potentials of the nucleus and cytosol in Arabidopsis thaliana.

    Daniel Schnaubelt;Guillaume Queval;Yingping Dong;Yingping Dong;Pedro Diaz-Vivancos;Pedro Diaz-Vivancos

  • Histone Deacetylase Complex1 Expression Level Titrates Plant Growth and Abscisic Acid Sensitivity in Arabidopsis

    Unknown

  • Combined Transcript and Metabolite Profiling of Arabidopsis Grown under Widely Variant Growth Conditions Facilitates the Identification of Novel Metabolite-Mediated Regulation of Gene Expression

    Matthew A. Hannah;Camila Caldana;Dirk Steinhauser;Ilse Balbo

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