PURIFICATION OF RICE DEHYDROASCORBATEREDUCTASE
スポンサーリンク
概要
著者
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USHIMARU Takashi
Dept. Bio., Fac. Sci., Shizuoka Univ.
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Ushimaru Takashi
Department Of Biology Faculty Of Science Shizuoka University
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Kato Y
Department Of Biology Faculty Of Science Shizuoka University
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Urano Junichi
Department of Biology, Faculty of Science, Shizuoka University
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KATO Yoshihiro
Dept. Biol., Fac. Sci., Shizuoka Univ.
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URANO Junichi
Dept. Biol., Fac. Sci., Shizuoka Univ.
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Urano Junichi
Department Of Biology Faculty Of Science Shizuoka University
関連論文
- Induction of Enzymes Involved in the Ascorbate-Dependent Antioxidative System, Namely, Ascorbate Peroxidase, Monodehydroascorbate Reductase and Dehydroascorbate Reductase, after Exposure to Air of Rice (Oryza sativa) Seedlings Germinated under Water
- DIFFERENTIAL RESPONSES OF ANTIOXICATIVEENZYMES IN RICE SEEDLINGS TO HYPOXIC STRESS
- Enzymic Dissociation of Zea Shoot Cell-Wall Polysaccharides V.Dissociation of Xyloglucan by Urea
- Formation of p^+-layer in GaAs by dual implantation of Zn and As
- Redistrubution of Zn Implanted into GaAs
- Purification and Characterization of Dehydroascorbate Reductase from Rice
- PURIFICATION OF RICE DEHYDROASCORBATEREDUCTASE
- COMPARISON OF DEHYDROASCORBATE REDUCTASESFROM RAPE AND RICE
- Acidic Arabinoxylan as an Extracellular Polysaccharide of Suspension-Cultured Soybean Cells
- cDNA cloning of a gene for dehydroascorbate reductase in rice seedlings
- DIFFERENTIAL RESPONSES OF ORGANELLES OFRICE SEEDLINGS TO HYPOXIC STRESS
- Resistance to Oxidative Injury in Submerged Rice Seedlings after Exposure to Air : ENVIRONMENTAL AND STRESS RESPONSES
- Development of the O_2^--Detoxification System during Adaptation to Air of Submerged Rice Seedlings : ENVIRONMENTAL AND STRESS RESPONSES : PROTEINS, ENZYMES AND METABOLISM
- Changes in Levels of Heme a, Protoheme and Protochlorophyll(ide) in Submerged Rice Seedlings after Exposure to Air : ENVIRONMENTAL AND STRESS RESPONSES : PROTEINS, ENZYMES AND METABOLISM
- Analysis of chloramphenicol-hypersensitive yeast mutants
- RESPONSES OF ANTIOXIDATIVE ENZYMES INRICE SEEDLINGS TO CHILLING STRESS