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Laboratory Of Plant Cell Biochemistry Department Of Applied Plant Science Division Of Life Science G | 論文
- ACT Domain Repeat Protein 7, ACR7, Interacts with a Chaperone HSP18.0-CII in Rice Nuclei
- Interaction of N-Acetylglutamate Kinase with a PII-Like Protein in Rice
- A Ca^-Dependent Protein Kinase that Endows Rice Plants with Cold- and Salt-Stress Tolerance Functions in Vascular Bundles
- Compartmentation of asparagine synthetase in rice roots
- Investigation of cis element that regulates tissue-specific expression of gene for rice NADH-GOGAT
- LOCALIZATION OF STRESS-INDUCIBLE OsCDPK7 SIGNALING PATHWAY IN WILD-TYPE AND OsCDPK7-OVEREXPRESSING RICE PLANTS
- Cellular localization of asparagine synthetase in rice plants
- Cellular and subcellular localization of NADH-dependent or Fd-dependent glutamate synthase protein in the stele of rice roots
- REGULATION OF THE EXPRESSION OF NADH-DEPENDENT GLUTAMATE SYNTHASE (NADH-GOGAT) GENE BY OKADAIC ACID IN RICE
- Inducible Accumulation of mRNA for NADH-Dependent Glutamate Synthase in Rice Roots in Response to Ammonium Ions
- Tissue specific and nitrogen inducible expression of rice NADH-GOGAT gene promoter in transgenic rice plants
- ANALYSIS OF NADH DEPENDENT GLUTAMATE SYNTHASE PROMOTER IN TRANSGENIC RICE PLANTS
- CHARACTERIZATION OF RICE NADH-DEPENDENT GLUTAMATE SYNTHASE cDNA
- STRUCTURAL CHARACTERIZATION OF RICE NADH-DEPENDENT GLUTAMATE SYNTHASE GENE
- MOLECULAR CLONING AND STRUCTURAL CHAR-ACTERIZATION OF RICE NADH-DEPENDENT GLU-TAMATE SYNTHASE GENE
- Noncontact, Electrode-free Capacitance/Voltage Measurement Based on General Theory of Metal-Oxide-Semiconductor (MUS) Structure
- Changes in the tissue-localization of NADH-dependent glutamate synthase protein following the addition of NH_4^+ in the root-tips of rice seedlings
- Transgenic rice plants whose expression of NADH-GOGAT is modulated by anti-sense RNA
- CHARACTERIZATION OF TWO TOBACCO CELL LINES SELECTED TO GROW IN THE PRESENCE OF EITHER IONIC AI OR INSOLUBLE Al-PHOSPHATE
- Histochemical studies on the expression of two glutamate synthase proteins and mRNAs in rice roots