TSUGE TAKEHARU | Department of Food Science and Technology, Faculty of Agriculture, Kyushu University
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概要
関連著者
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TSUGE TAKEHARU
Department of Food Science and Technology, Faculty of Agriculture, Kyushu University
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Tsuge Takeharu
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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TOMIZAWA Satoshi
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Saito Yuta
Department Of Ophthalmology School Of Medicine Showa University
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Mizuno Kouhei
Division Of Biochemical Engineering Department Of Materials Science And Chemical Engineering Kitakyu
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Watanabe Yoriko
Department Of Biology Graduate School Of Science Tohoku University
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HYAKUTAKE Manami
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Tomizawa Satoshi
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Saika Azusa
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Tsuge Takeharu
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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USHIMARU Kazunori
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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TANAKA Kenji
Department of Energy Conversion, Graduate School of Engineering Sciences, Kyushu University
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Abe Hideki
Department Of Chemistry The University Of Tokyo
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SHIMODA Mitsuya
Department of Bioscience and Biotechnology, Faculty of Agriculture, Kyushu University
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Ishizaki Ayaaki
Laboratory Of Microbial Technology Division Of Microbial Science And Technology Department Of Biosci
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Ishizaki Ayaaki
Laboratory Of Microbial Technology Department Of Bioscience And Biotechnology Faculty Of Agriculture
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Ishizaki Ayaaki
Department Of Food Science And Technology Kyushu University
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Ishizaki Ayaaki
Department Of Food Science And Technology Faculty Of Agriculture Kyushu University
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Ishizaki Ayaaki
Division Of Bioscience And Biotechnology Graduate School Of Bioresource And Bioenvironmental Science
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Ishizaki Ayaaki
Laboratory Of Microbial Science And Technology Division Of Bioscience And Biotechnology Graduate Sch
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Ishizaki Ayaaki
Laboratory Of Microbial Technology Department Of Food Science And Technology Faculty Of Agriculture
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Shimada Daisuke
Department Of Applied Physics Science University Of Tokyo
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Shimoda Mitsuya
Department Of Food Science And Technology Faculty Of Agriculture Kyushu University
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SATO Shun
Department of Physiology, Nippon Medical School
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Tanaka K
Univ. East Asia Yamaguchi Jpn
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Ishizaki A
Laboratory Of Microbial Technology Department Of Bioscience And Biotechnology Faculty Of Agriculture
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Doi Yoshiharu
Polymer Chemistry Laboratory Riken Institute
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Tanaka Kenji
Department Of Electrical Engineering Faculty Of Engineering Science University Of Tokyo
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Taguchi Seiichi
Division Of Biotechnology And Macromolecular Chemistry Graduate School Of Engineering Hokkaido Unive
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Shimoda Mitsuya
Department Of Bioscience And Biotechnology Faculty Of Agriculture Kyushu University
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Nomura Christopher
Department of Chemistry, State University of New York-College of Environmental Science and Forestry
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Tanaka Kenji
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Abe Hideki
Department Of Chemical Pharmaceutical Science Tohoku Pharmaceutical University
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Doi Yoshiharu
Polymer Chemistry Laboratory Riken
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Ishizaki Ayaaki
Department Of Food Science And Technology Faculty Of Agriculture 46-09 Kyushu University
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Sato Shun
Department Of Physiology Nippon Medical School
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Nomura Christopher
Department Of Chemistry State University Of New York-college Of Environmental Science And Forestry
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Abe Hideki
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology:polymer Chemistry La
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Hyakutake Manami
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Mizuno Kouhei
Division Of Biochemical Engineering Department Of Materials Science And Chemical Engineering Kitakyu
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Taguchi Seiichi
Division Of Biotechnology And Macromolecular Chemistry Graduate School Of Engineering Hokkaido Unive
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Ichinomiya Yousuke
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Saika Azusa
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Abe Hideki
Bioplastic Research Team, RIKEN Biomass Engineering Program
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Watanabe Yoriko
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Saito Yuta
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Ichinomiya Yousuke
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Abe Hideki
Department Of Biological Sciences Graduate School Of Science The University Of Tokyo
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Abe Hideki
Bioplastic Research Team Riken Biomass Engineering Program
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Sato Shun
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Shimada Daisuke
Department Of Applied Chemistry Institute Of Science And Engineering Chuo University
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Shimada Daisuke
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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YOSHIOKA Masako
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Hiroe Ayaka
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Saito Yuta
Department of General Internal Medicine, Aso Iizuka Hospital
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Sudesh Kumar
Ecobiomaterial Research Laboratory, School of Biological Sciences, Universiti Sains Malaysia
著作論文
- Optimization of L-Lactic Acid Feeding for the Production of Poly-K-3-Hydroxybutyric Acid by Alcaligenes eutrophus in Fed-Batch Culture
- Metabolic Improvements and Use of Inexpensive Carbon Sources in Microbial Production of Polyhydroxyalkanoates(BIOCHEMICAL ENGINEERING)
- Poly[(R)-3-Hydroxybutyrate] Formation in Escherichia coli from Glucose through an Enoyl-CoA Hydratase-Mediated Pathway(ENZYMOLOGY, PROTEIN ENGINEERING, AND ENZYME TECHNOLOGY)
- Polyhydroxyalkanoate (PHA) Synthesis by Class IV PHA Synthases Employing Ralstonia eutropha PHB−4 as Host Strain
- Polyhydroxyalkanoate (PHA) Synthesis by Class IV PHA Synthases Employing Ralstonia eutropha PHB^-4 as Host Strain
- Development and validation of an HPLC-based screening method to acquire polyhydroxyalkanoate synthase mutants with altered substrate specificity(ENZYMOLOGY, PROTEIN ENGINEERING, AND ENZYME TECHNOLOGY)
- Preparative synthesis of Poly[(R)-3-hydroxybutyrate] monomer for enzymatic cell-free polymerization
- Characterization of polyhydroxyalkanoate (PHA) synthase derived from Delftia acidovorans DS-17 and the influence of PHA production in Escherichia coli(ENZYMOLOGY, PROTEIN ENGINEERING, AND ENZYME TECHNOLOGY)
- Biosynthesis of poly(3-hydroxybutyrate-co-3-hydroxy-4-methylvalerate) by recombinant Escherichia coli expressing leucine metabolism-related enzymes derived from Clostridium difficile(GENETICS, MOLECULAR BIOLOGY, AND GENE ENGINEERING)