World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
50
Citations
7991
World Ranking
2176
National Ranking
200

Best Publications

  • <i>Arabidopsis</i> Atb<scp>HLH</scp>112 regulates the expression of genes involved in abiotic stress tolerance by binding to their E‐box and <scp>GCG</scp>‐box motifs

    Unknown

  • Expression of the <scp>MYB</scp> transcription factor gene <i>Bpl<scp>MYB</scp>46</i> affects abiotic stress tolerance and secondary cell wall deposition in <i>Betula platyphylla</i>

    Unknown

  • A novel bZIP gene from Tamarix hispida mediates physiological responses to salt stress in tobacco plants

    Unknown

  • Biocontrol potential of Trichoderma harzianum isolate T-aloe against Sclerotinia sclerotiorum in soybean

    Unknown

  • EsDREB2B, a novel truncated DREB2-type transcription factor in the desert legume Eremosparton songoricum, enhances tolerance to multiple abiotic stresses in yeast and transgenic tobacco

    Xiaoshuang Li;Xiaoshuang Li;Daoyuan Zhang;Haiyan Li;Yucheng Wang

  • Overexpression of a GST gene (ThGSTZ1) from Tamarix hispida improves drought and salinity tolerance by enhancing the ability to scavenge reactive oxygen species

    Unknown

  • Arabidopsis heat shock transcription factor HSFA7b positively mediates salt stress tolerance by binding to an E-box-like motif to regulate gene expression

    Unknown

  • Characterization of a eukaryotic translation initiation factor 5A homolog from Tamarix androssowii involved in plant abiotic stress tolerance

    Unknown

  • Tamarix hispida zinc finger protein ThZFP1 participates in salt and osmotic stress tolerance by increasing proline content and SOD and POD activities

    Unknown

  • Overexpression of ThVHAc1 and its potential upstream regulator, ThWRKY7, improved plant tolerance of Cadmium stress

    Unknown

  • ThDof1.4 and ThZFP1 constitute a transcriptional regulatory cascade involved in salt or osmotic stress in Tamarix hispida

    Unknown

  • Genome sequence and evolution of Betula platyphylla

    Su Chen;Yucheng Wang;Lili Yu;Tao Zheng

  • ThNAC13, a NAC Transcription Factor from Tamarix hispida, Confers Salt and Osmotic Stress Tolerance to Transgenic Tamarix and Arabidopsis

    Unknown

  • Biocontrol and growth-promoting effect of Trichoderma asperellum TaspHu1 isolate from Juglans mandshurica rhizosphere soil

    Unknown

  • A WRKY gene from Tamarix hispida, ThWRKY4, mediates abiotic stress responses by modulating reactive oxygen species and expression of stress-responsive genes

    Unknown

  • The bZIP protein from Tamarix hispida, ThbZIP1, is ACGT elements binding factor that enhances abiotic stress signaling in transgenic Arabidopsis

    Unknown

  • A Transient Transformation System for the Functional Characterization of Genes Involved in Stress Response

    Unknown

  • A novel LEA gene from Tamarix androssowii confers drought tolerance in transgenic tobacco

    Unknown

  • ATDOF5.8 protein is the upstream regulator of ANAC069 and is responsive to abiotic stress

    Unknown

  • Comprehensive Analysis of MYB Gene Family and Their Expressions Under Abiotic Stresses and Hormone Treatments in Tamarix hispida

    Unknown

Frequent Co-Authors

David M. Jablons
David M. Jablons University of California, San Francisco
David B. Donner
David B. Donner University of California, San Francisco
Michael S. German
Michael S. German University of California, San Francisco
Jian-Hua Mao
Jian-Hua Mao Lawrence Berkeley National Laboratory
Jun Lu
Jun Lu Zhejiang University
Alan P. Venook
Alan P. Venook University of California, San Francisco
Todd R. Golub
Todd R. Golub Harvard University
Douglas Hanahan
Douglas Hanahan École Polytechnique Fédérale de Lausanne
Evan S. Deneris
Evan S. Deneris Case Western Reserve University
Kevan M. Shokat
Kevan M. Shokat University of California, San Francisco

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