ELECTRON FLOW AROUND PHTOSYSTEM I IS DIFFERENTIALLY MODULATED IN THE TRANSGENIC CYANOBACTERIA WITH TWO MAIZE FERREDOXINS SPECIFICALLY EXPRESSED IN C_4-PHOTOSYNTHETIC CELLS
スポンサーリンク
概要
著者
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ARIGA Yoko
Division Enzymology
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Hase Toshiharu
Division Enzymology
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Endo Tsuyoshi
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University
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Sato Fumihiko
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University
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Mano Junichi
The Research Institute for Food Science, Kyoto University
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Endo Tsuyoshi
Division Of Applied Life Sciences Graduate School Of Agriculture Kyoto University
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Mano Junichi
The Research Institute For Food Science Kyoto University
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FUJIMOTO Hiroki
Division of Enzymology, Institute for Protein Research, Osaka University
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Fujimoto Hiroki
Division Of Enzymology Institute For Protein Research Osaka University
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Endo Tsuyoshi
Division Of Applied Life Sciences Graduae School Of Agriculture
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Ariga Yoko
Division Of Enzymology Institute For Protein Research Osaka University
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Hase Toshiharu
Division Of Enzymology Institute For Protein Research Osaka University
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Fujimoto Hiroki
Division Of Chemical Engineering Graduate School Of Engineering Science Osaka University
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Sato Fumihiko
Division Of Applied Life Sciences Graduate School Of Agriculture Kyoto University
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- GENE DISRUPTION OF NDHB IMPAIRS CYCLIC ELECTRON FLOW AROUND PS I IN TOBACCO
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- Monodehydroascorbate Radical Detected by Electron Paramagnetic Resonance Spectrometry Is a Sensitive Probe of Oxidative Stress in Intact Leaves
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- Effects of a Probiotic on the Lipid Metabolism of Cocks Fed on a Cholesterol-enriched Diet
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- Differential Effects of Nitrate and Light on the Expression of Glutamine Synthetases and Ferredoxin-Dependent Glutamate Synthase in Maize : ENVIRONMENTAL AND STRESS RESPONSES
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- Cell Growth and Organ Differentiation in Cultured Tobacco Cells under Spaceflight Condition
- Cell Growth and Organ Differentiation in Cultured Tobacco Cells under Spaceflight Condition
- Bowman-Birk Proteinase Inhibitor Confers Heavy Metal and Multiple Drug Tolerance in Yeast
- Establishment of Rhizobium-mediated transformation of Coptis japonica and molecular analyses of transgenic plants
- Lichen Photobionts Show Tolerance against Lichen Acids Produced by Lichen Mycobionts
- Ferredoxin Limits Cyclic Electron Flow around PSI (CEF-PSI) in Higher Plants-Stimulation of CEF-PSI enhances Non-Photochemical Quenching of Chl Fluorescence in Transplastomic Tobacco
- Functional Analysis of Four Members of the PsbP Family in Photosystem II in Nicotiana tabacum using Differential RNA Interference
- Specific RNA Interference in psbP Genes Encoded by a Multigene Family in Nicotiana tabacum with a Short 3'-Untranslated Sequence(Biochemistry & Molecular Biology)
- Post-illumination Reduction of the Plastoquinone Pool in Chloroplast Transformants in which Chloroplastic NAD (P) H Dehydrogenase was Inactivated(Biochemistry & Molecular Biology)
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- Arabidopsis nrd6 is defective in ΔpH generation across thylakoid membranes
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- Identification of a WRKY Protein as a Transcriptional Regulator of Benzylisoquinoline Alkaloid Biosynthesis in Coptis japonica
- In Vivo Bioconversion of Tetrahydroisoquinoline by Recombinant Coclaurine N-Methyltransferase
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- Conversion of a Cyanhydrin Compound into S-(-)-3-Phenyllactic Acid by Enantioselective Hydrolytic Activity of Pseudomonas sp. BC-18
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- PHOTOSYNTHESIS IN THE TRANSGENIC CYANOBACTERIA WITH MAIZE FERREDOXINS SPECIFICALLY EXPRESSED IN C_4-PHOTOSYNTHETIC CELLS
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- A Novel Nuclear-Encoded Protein, NDH-Dependent Cyclic Electron Flow 5, is Essential for the Accumulation of Chloroplast NAD(P)H Dehydrogenase Complexes
- NDF6 : A Thylakoid Protein Specific to Terrestrial Plants is Essential for Activity of Chloroplastic NAD(P)H Dehydrogenase in Arabidopsis
- Photoproduction of the Azidyl Radical from the Azide Anion on the Oxidizing Side of Photosystem II and Suppression of Photooxidation of Tyrosine Z by the Azidyl Radical : PROTEINS, ENZYMES AND METABOLISM : MEMBRANES AND BIOENERGETICS
- Expression of PR-5d and ERF Genes in Cultured Tobacco Cells and Their NaCl Stress-response
- Characterization of Gene Expression of NsERFs, Transcription Factors of Basic PR Genes from Nicotiana sylvestris
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- Plant Pathogenesis-Related Proteins : Molecular Mechanisms of Gene Expression and Protein Function
- New Ulcerative Colitis Model Induced by Sulfhydryl Blockers in Rats and the Effects of Antiinflammatory Drugs on the Colitis
- Metabolic Diversification of Benzylisoquinoline Alkaloid Biosynthesis Through the Introduction of a Branch Pathway in Eschscholzia californica
- Lichen Photobionts Show Tolerance against Lichen Acids Produced by Lichen Mycobionts
- Molecular Cloning of an O-Methyltransferase from Adventitious Roots of Carapichea ipecacuanha
- Isolation of Herbicide-Resistant 4-Hydroxyphenylpyruvate Dioxygenase from Cultured Coptis japonica Cells
- Mmlecular Characterization of Tobacco Sulfite Reductase : Enzyme Purification,Gene Cloning, Gene Expression Analysis
- Molecular characterization of O-methyltransferases involved in isoquinoline alkaloid biosynthesis in Coptis japonica
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- Cloning of the Gene Encoding a Protochlorophyllide Reductase : the Physiological Significance of the Co-Existence of Light-Dependent and -Independent Protochlorophyllide Reduction Systems in the Cyanobacterium Plectonema boryanum
- Identification of the chlB Gene and the Gene Product Essential for the Light-Independent Chlorophyll Biosynthesis in the Cyanobacterium Plectonemaboryanum
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- Structure of the Chloroplast NADH Dehydrogenase-Like Complex : Nomenclature for Nuclear-Encoded Subunits
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- Molecular Evolution and Plasticity in Isoquinoline Alkaloid Biosynthesis
- Allocation of Absorbed Light Energy in PSII to Thermal Dissipations in the Presence or Absence of PsbS Subunits of Rice
- Improvement of Benzylisoquinoline Alkaloid Productivity by Overexpression of 3′-Hydroxy-N-methylcoclaurine 4′-O-Methyltransferase in Transgenic Coptis japonica Plants
- Improvement of Reticuline Productivity from Dopamine by Using Engineered Escherichia coli
- Screening of Isoquinoline Alkaloids for Potent Lipid Metabolism Modulation with Caenorhabditis elegans