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    Research News

    • MHZ6/OsEIL1 and OsEIL2 Negatively Affect Salt Tolerance in Rice
      MHZ6/OsEIL1 and OsEIL2 Negatively Affect Salt Tolerance in Rice

      Scientists from Prof ZHANG Jinsong’s group and Prof CHEN Shouyi’s group at the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, found MHZ6/OsEIL1 and OsEIL2 regulate ethylene response of roots and coleoptiles and negatively affect salt tolerance in rice.

      03 Jun 2015
    • A Gibberellin-Mediated DELLA-NAC Signaling Cascade Regulates Cellulose Synthesis
      A Gibberellin-Mediated DELLA-NAC Signaling Cascade Regulates Cellulose Synthesis

      The group of Prof. ZHOU Yihua from the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, demonstrated that in rice (Oryza sativa), GA signals promote cellulose synthesis by relieving the interaction between SLENDER RICE1 (SLR1), a DELLA repressor of GA signaling, and NACs, the top-layer transcription factors for secon...

      01 Jun 2015
    • GmWRKY27 Improves Salt and Drought Tolerance in Soybean Plants
      GmWRKY27 Improves Salt and Drought Tolerance in Soybean Plants

      The groups of Prof. CHEN Shou-Yi and Prof. ZHANG Jin-Song from the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, found the gene GmWRKY27 interacted with the gene GmMYB 174 to improve the stress tolerance in soybean plants.

      26 May 2015
    • Translationally Controlled Tumor Protein (TCTP) Stabilizes Ethylene Receptor NTHK1 and Promotes Plant Growth
      Translationally Controlled Tumor Protein (TCTP) Stabilizes Ethylene Receptor NTHK1 and Promotes Plant Growth

      14 May 2015
    • Deficient Plastidic Fatty Acid Synthesis Triggers Cell Death in Plant
      Deficient Plastidic Fatty Acid Synthesis Triggers Cell Death in Plant

      04 May 2015
    • Scientists Found Melatonin Delays Leaf Senescence and Enhances Salt Stress Tolerance in Rice
      Scientists Found Melatonin Delays Leaf Senescence and Enhances Salt Stress Tolerance in Rice

      CHU Chengcai’s group from Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, revealed the molecular mechanism of delaying leaf senescence mediated by melatonin in rice.

      29 Apr 2015
    • Ethylene Responses in Rice Roots and Coleoptiles Are Differentially Regulated by a Carotenoid Isomerase-Mediated Abscisic Acid Pathway
      Ethylene Responses in Rice Roots and Coleoptiles Are Differentially Regulated by a Carotenoid Isomerase-Mediated Abscisic Acid Pathway

      08 Apr 2015
    • Tryptophan-independent Auxin Biosynthesis Contributes to Early Embryogenesis in <EM>Arabidopsis</EM>
      Tryptophan-independent Auxin Biosynthesis Contributes to Early Embryogenesis in Arabidopsis

      31 Mar 2015
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