Ogawa T | Kumamoto Inst. Technol. Kumamoto Jpn
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概要
関連著者
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OGAWA TAKAHIRA
Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo Universi
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Ogawa T
Kyoto Univ. Kyoto Jpn
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Ogawa Takahiro
Department Of Biological Science And Technology Science University Of Tokyo
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FUKUDA HIDEO
Department of Applied Microbial Technology, Kumamoto Institute of Technology
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Fukuda H
Kobe Univ. Kobe Jpn
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Ogawa T
Kumamoto Inst. Technol. Kumamoto Jpn
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Ogawa Takahira
Department Of Applied Microbial Technology Faculty Of Biotechnology And Life Science Sojo University
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Ogawa Takahira
Dept. Appl. Microbial Technology Kumamoto Institute Of Technology
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Fukuda Hideo
Dept. Appl. Microbial Technology Kumamoto Institute Of Technology
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Fukuda Hideo
Department Of Applied Microbial Technology Kumamoto Institute Of Technology
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Ogawa T
Department Of Applied Microbial Technology Faculty Of Biotechnology And Life Science Sojo University
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Fujii Takao
Department of Applied Life Science, Faculty of Engineering, Sojo University
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Fujii T
Kyoto Univ. Kyoto
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Fukuda Hideki
Department Of Molecular Science And Material Engineering Graduate School Of Science And Technology K
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Fujii Takao
Department Of Applied Life Science Faculty Of Biotechnology And Life Science Sojo University
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Fukuda Hideo
Department Of Applied Microbial Technology The Kumamoto Institute Of Technolgy
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Ogawa T
Shinshu Univ. Nagano Jpn
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Fukuda H
Kobe Univ. Kobe
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MATSUOKA MASAYOSHI
Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo Universi
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Takahashl Mika
Laboratory Of Animal Environment Meiji University
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Matsuoka M
Department Of Applied Microbial Technology Faculty Of Biotechnology And Life Science Sojo University
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Matsuoka Masayoshi
Dept. Applied Microb. Technol. Sojo Univ.
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Matsuoka Masayoshi
Dept. Appl. Microbial Technology Kumamoto Institute Of Technology
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Matsuoka Masayoshi
Department Of Applied Microbial Technology Faculty Of Biotechnology And Life Science Sojo University
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Takahashi Masaya
Industrial Chemistry The Kumamoto Institute Of Technology
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Nakamura Kahoru
Department Of Nutrition Tokyo University Of Agriculture
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TAKAHASHI Masaya
Department of Stem Cell Biology and Regenerative Medicine, Graduate School of Medical Science, Kansa
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IWATA Makoto
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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中村 薫
京大 化研
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Fujii T
Department Of Applied Biological Chemistry The University Of Tokyo
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TANASE SUMIO
Department of Biochemistry, Kumamoto University School of Medicine
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ISHIHARA KATSUYA
Department of Applied Microbial Technology, Kumamoto Institute of Technology
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NAKAMURA Kiminori
Department of Applied Microbial Technology, The Kumamoto Institute of Technolgy
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TAZAKI MASATO
Industrial Chemistry, The Kumamoto Institute of Technology
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Iwata Makoto
Department Of Applied Physics School Of Engineering Nagoya University
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Nagahama Kazuhiro
Department Of Applied Microbial Technology The Kumanoto Institute Of Technology
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Fujii T
Inst. Biol. Sci. Univ. Tsukuba
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Takegawa Sumio
Department Of Microbiology Kinki University School Of Medicine
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Ogawa Tadashi
Graduate School Of Bioagricultural Sciences Nagoya University
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Tanase Sumio
Department Of Biochemistry Kumamoto University School Of Medicine
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Takahashi Masaya
Department Of Stem Cell Biology And Regenerative Medicine Graduate School Of Medical Science Kansai
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Ishihara Katsuya
Division Of Cardiology And Cardiac Surgery Kofu Johnan Hospital
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Takahashi Masaya
Department Of Electronic Engineering Aichi College Of Technology
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Takahashi Masaya
Department Of Electrical And Electronic Engineering Oita University
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MURAKAMI Hiroshi
Department of Mechanical Engineering, Faculty of Engineering, Kyushu Sangyo University
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NAGAHAMA KAZUHIRO
Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo Universi
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Inoue Yorinao
The Institute of Physical and Chcmical Research
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Nagahama Kazuhiro
Department Of Applied Microbial Technology Faculty Of Biotechnology And Life Science Sojo University
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SAKAI MIHO
Department of Applied Microbial Technology, Kumamoto Institute of Technology
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SUKITA Eiki
Department of Applied Microbial Technology, The Kumamoto Institute of Technolgy
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Daimon Hironori
Department of Applied Microbial Technology, The Kumamoto Institute of Technology
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Morino Yoshimasa
Department of Biochemistry, Kumamoto University School of Medicine
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YAMASHITA KAZUHIRO
Departments of Applied Microbial Technology
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Sakai Miho
Dept. Appl. Microbial Technology Kumamoto Institute Of Technology
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Fujii T
Div. Of Bioresource Sci. Graduate School Of Horticulture Chiba Univ.
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Sukita Eiki
Department Of Applied Microbial Technology The Kumamoto Institute Of Technolgy
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Murakami Hiroshi
Department Of Endocrinology Clinical Institute Of Endocrinology Tokyo Women's Medical Universit
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Yamashita K
Departments Of Applied Microbial Technology
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Inoue Yorinao
The Institute Of Physical And Chemical Research (riken)
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Murakami Hiroshi
Department Of Endocrinology And Metabolism Hirosaki University Graduate School Of Medicine
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Inoue Yorinao
The Inst. Of Phys. And Chem. Res. (riken)
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Murakami Hiroshi
Department Of Biochemistry And Cell Biology Graduate School Of Medicine Nagoya City University
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Daimon Hironori
Department Of Applied Microbial Technology The Kumamoto Institute Of Technology
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Murakami Hiroshi
Departments Of Applied Microbial Technology
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Murakami Hiroshi
Department of Applied Chemistry, Nagoya Institute of Technology
著作論文
- Photosynthetic Conversion of Carbon Dioxide to Ethylene by the Recombinant Cyanobacterium, Synechococcus sp. PCC 7942,Which Harbors a Gene for the Ethylene-Forming Enzyme of Pseudomonas syringae
- Ethylene Production Using a Broad-Host-Range Plasmid in Pseudomonas syringae and Pseudomonas putida
- Cytochrome P450rm from Rhodotorula minuta Catalyzes 4-Hydroxylation of Benzoate
- Overexpression and In Vitro Reconstitution of the Ethylene-Forming Enzyme from Pseudomonas syringae
- Purification and Characterization of Cytochrome P450 from an Isobutene-forming Microorganism, Rhodotorula minuta
- Purification and Characterization of Cytochrome b_5 from Rhodotorula minuta
- The Stimulatory Effect of Catalase on the Formation in vitro of Ethylene by an Ethylene-Forming Enzyme Purified from Penicillium digitatum
- Classification of Ethylene-Producing Bacteria in Terms of Biosynthetic Pathways to Ethylene
- The Role of NADH : Fe(III)EDTA Oxidoreductase in Ethylene Formation from 2-Keto-4-Methylthiobutyrate
- The Relationship between Isobutene-Forming Activity and a Cytochrome P-450 in Rhodotorula minuta
- Ethylene Production from L-Methionine by Cryptococcus albidus