Nishizawa Naoko | Environmental Science Tohoku University
スポンサーリンク
概要
関連著者
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Nishizawa Naoko-kishi
Lab Plant. Mol. Physiol. Tokyo Univ. Fac. Pharmaceutical. Science. Nagoya City Univ.
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Nishizawa Naoko
Laboratory Of Plant Biotechnology Graduate School Of Agricultural And Life Sciences The University O
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Mori Satoshi
Lab Plant. Mol. Physiol. Tokyo Univ. Fac. Pharmaceutical. Science. Nagoya City Univ.
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Nishizawa Naoko
The University Of Tokyo
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Mori S
Dept. Of Appl. Biol. Chem. Univ. Tokyo
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Nishizawa N‐k
Univ. Tokyo Tokyo Jpn
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Mori S
Department Of Applied Biological Chemistry The University Of Tokyo
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Mori S
Laboratory Of Plant Biotechnology Graduate School Of Agricultural And Life Sciences The University O
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Matsuhashi S
Takasaki Advanced Radiation Research Institute Japan Atomic Energy Agency
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Takahashi Michiko
Department Of Global Agricultural Sciences Graduate School Of Agricultural And Life Science The Univ
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MORI Satoshi
Laboratory of Plant Biotechnology, Graduate School of Agricultural and Life Sciences, The University
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NAKANISHI Hiromi
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Mori Satoshi
Laboratory Of Piant Molecular Physiology Department Of Applied Biological Chemistry The University O
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中西 啓仁
東大院・農
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NISHIZAWA Naoko
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Nakanishi Hiromi
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Nishizawa Naoko
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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NAKANISHI Hiromi
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, Unive
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MORI Satoshi
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Nishizawa Naoko
Department Of Agricultural Chemistry Faculty Of Agriculture The University Of Tokyo
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Yamaguchi Hirotaka
Dept. Agriculture And Agricultural Chemistry Tokyo Univ.:crest
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Yamaguchi H
Akita Prefectual University
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Nishizawa Naoko
Department of Agricultural Chemistry, Faculty of Agriculture, The University of Tokyo
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MORI Satoshi
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Suzuki Kiyonori
Department Of Materials Science Kitami Institute Of Technology
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Ishimaru Yasuhiro
The University of Tokyo
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Mori Satoshi
Graduate School Of Agricultural And Life Sciences The University Of Tokyo
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Ishimaru Yasuhiro
Department Of Global Agricultural Sciences Graduate School Of Agricultural And Life Sciences
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MORI Satoshi
Department of Applied Biological Chemistry, Division of Agriculture and Agricultural Life Sciences,
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NAKANISHI Hiromi
Laboratory of Plant Molecular Physiology, Department of Applied Biological Chemistry, The University
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Mori Satoshi
Department Of Agricultural Chemistry Faculty Of Agriculture The University Of Tokyo
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Kobayashi Takanori
Univ. Tokyo Tokyo
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TAKAHASHI Michiko
Department of Pediatrics, Sapporo Kousei Hospital
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YAMAGUCHI Hirotaka
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Nakananishi Hiromi
The University of Tokyo
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Takahashi Michiko
Department Of Cardiology Kitasato Institute Hospital
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HIGUCHI Kyoko
Laboratory of Plant Production Chemistry, Department of Applied Biology and Chemistry, Tokyo Univers
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Takahashi Michiko
Graduate School of Agricultural and life Sciences, The University of Tokyo
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中西 啓仁
Graduate School Of Agricultural And Life Sciences The University Of Tokyo
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Kawasaki S
Kyokugen Research Center For Materials Science At Extreme Conditions Osaka University
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Kim Suyeon
Department of Global Agricultural Sciences, The University of Tokyo
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Kawasaki Shinji
Japex Geosciences Institute Tokyo Japan
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NISHIZAWA Naoko-Kishi
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Kim S
Univ. Tokyo Tokyo
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Kobayashi Takanori
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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TSUKAMOTO Takashi
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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MATSUHASHI Shinpei
Takasaki Advanced Radiation Research Institute, Japan Atomic Energy Agency
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SUZUKI Kazuya
Core Research for Environmental Science and Technology (CREST)
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MORI Satoshi
Core Research for Environmental Science and Technology (CREST)
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NISHIMURA Shintaro
The Medical and Pharmacological Research Center Foundation
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Matsuhashi Shinpei
Takasaki Advanced Radiation Research Institute Japan Atomic Energy Agency
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Kawasaki Shinji
National Institute Of Agrobiological Resources Tsukuba
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Nishiyama Shingo
The Medical And Pharmacological Research Center Foundation
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TAKAHASHI Michiko
CREST
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NISHIMURA Mikio
Department of Cell Biology, National Institute for Basic Biology
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Shimada Tomoo
Department Of Botany Graduate School Of Science Kyoto University
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Shimada Tomoo
Kyoto Univ. Kyoto Jpn
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Furuya Masaki
Hitachi Advanced Research Lab
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渡邉 聡
東大工:科技団crest
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Furuya Masaki
Hitachi Adv. Res. Lab Saitama
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Watanabe Satoshi
Graduate School Of Science And Technology Chiba University:japan International Research Center For A
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Saigusa Masahiko
Field Science Center, Graduate School of Agricultural Science, Tohoku University
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Nozoye Tomoko
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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ISHIMARU Yasuhiro
Department of Global Agricultural Sciences, Graduate School of Agricultural and Life Sciences
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SUZUKI Motofumi
Department of Global Agricultural Sciences, Graduate School of Agricultural and Life Sciences
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INOUE Haruhiko
Department of Global Agricultural Sciences, The University of Tokyo
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WATANABE Satoshi
Takasaki Advanced Radiation Research Institute, Japan Atomic Energy Agency
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Ishimaru Yasuhiro
Graduate School of Agricultural and life Sciences, The University of Tokyo
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Nagasaka Seiji
Core Research for Evolutional Science and Technology (CREST)
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WADA Yasuaki
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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SUZUKI Kazuya
Laboratory of Plant Molecular Physiology, Department of Applied Biological Chemistry, The University
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Chino Mitsuo
Laboratory Of Plant Nutrition And Fertilizers Department Of Agricultural Chemistry The University Of
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Yamada Kenji
Department Of Cell Biology National Institute For Basic Biology
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Yoshida Tomoko
Hitachi Advanced Research Laboratory Hitachi Instruments Service Co.
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Suzuki Kenji
Institute For Materials Research Tohoku University
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Chino Mitsuo
Laboratory Of Plant Nutrition And Fertilizer Faculty Of Agriculture The University Of Tokyo
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Nishimura M
Dep. Of Cell Biology National Inst. For Basic Biology
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Nishimura Mikio
Dept. Cell Biol. Nat. Inst. Basic. Biol.
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Nishizawa Naoko
Department Of Global Agricultural Sciences The University Of Tokyo
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Shimo Hugo
The University of Tokyo
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Takahashi Ryuichi
The University of Tokyo
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Senoura Takeshi
The University of Tokyo
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HISADA Akiko
Hitachi Advanced Research Laboratory
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KUBOTA Shigeo
Hitachi Advanced Research Laboratory
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HIGUCHI Kyoko
Core Research for Evolutional Science and Technology (CREST), Japan Science and Technology Corporati
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MATSUSHIMA Ryo
Department of Botany, Graduate School of Science, Kyoto University
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Shojima Shinsuke
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Nishizawa Naoko-Kishi
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Hisada Akiko
Hitachi Adv. Res. Lab.
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ITAI Reiko
Dept. of Appl. Biol. Chem., Univ. Tokyo
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SUZUKI Kazuya
Dept. of Appl. Biol. Chem., Univ. Tokyo
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Kanazawa Kenji
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Kishi-Nishizawa Naoko
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Fushiya Shinji
Pharmaceutical Institute, Tohoku University
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Nozoe Shigeo
Pharmaceutical Institute, Tohoku University
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FUSHIYA Shinji
Department of Kampo Pharmaceutical Sciences, Nihon Pharmaceutical University
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KAWASAKI Shinji
NIAR
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HIGUCHI Kyoko
Dept. Applied Biol. Chem., Tokyo Univ.
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OKUMOTO Sakiko
Dept. Agriculture and Agricultural Chemistry, Tokyo Univ.
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Saigusa Masahiko
Field Science Center Graduate School Of Agricultural Science Tohoku University:(present Office)toyoh
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Saigusa Masahiko
Field Sci. Center Graduate School Of Agric. Sci. Tohoku Univ.
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Itai Reiko
Dept. Appl. Biol. Chem. Univ. Tokyo
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Nozoe S
Tohoku Univ. Sendai Jpn
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Nozoe Shigeo
Pharmaceutical Institute Tohoku University
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YAMAKAWA Takashi
Department of Global Agricultural Sciences, The University of Tokyo
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Yamada Kenji
Department of Surgery, Nagasaki medical center of neurology
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KAWASAKI Shinji
National Institute of Agrobiological Sciences
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Nishizawa N
Univ. Tokyo Tokyo Jpn
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Aung May
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Ogo Yuko
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Yamakawa Takashi
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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ITO Satoshi
Laboratory of Plant Production Chemistry, Department of Applied Biology and Chemistry, Tokyo Univers
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INOUE Haruhiko
Laboratory of Plant Biotechnology, Graduate School of Agricultural and Life Sciences, The University
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KOBAYASHI Takanori
Laboratory of Plant Biotechnology, Graduate School of Agricultural and Life Sciences, The University
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YOSHIBA Masaaki
Laboratory of Plant Production Chemistry, Department of Applied Biology and Chemistry, Tokyo Univers
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OGO Yuko
Department of Global Agricultural Sciences, Graduate School of Agricultural and Life Sciences
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MORIKAWA Kendi
Field Science Center, Graduate School of Agriculture Science, Tohoku University
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MORIKAWA Claudio
Core Research for Evolutional Science and Technology, Japan Science and Technology Corporation
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NISHIZAWA Naoko
Core Research for Evolutional Science and Technology, Japan Science and Technology Corporation
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KIYOMIYA Shoichiro
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Bashir Khurram
Graduate School of Agricultural and life Sciences, The University of Tokyo
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Inoue Haruhiko
Core Research for Evolutional Science and Technology (CREST)
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OGAWA Ippei
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Nakayama Yuko
Graduate School of Agricultural and Life Sciences The University of Tokyo
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Inoue Haruhiko
Graduate School of Agricultural and Life Sciences The University of Tokyo
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Yoshihara Toshihiro
Bio-Science Department, Central Research Institute of Electric Power Industry (CRIEPI)
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Oki Hiroyuki
Department of Applied Biological Chemistyr, The University of Tokyo
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Yamaguchi Hirotaka
Department of Applied Biological Chemistry, The University of Tokyo
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Mizuno Daichi
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences The Un
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Nakanishi Itai
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Nagasaka Seiji
Graduate School of Agricultural and Life Sciences, The University of Tokyo
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Tsukamoto Takashi
Department of Global Agricultural Sciences, Graduate School of Agricultural and Life Science, Univer
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Uchida Hiroshi
Cental Research Laboratory, Hamamatsu Photonics K K
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Nishiyama Shingo
Cental Research Laboratory, Hamamatsu Photonics K K
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Tsukada Hideo
Cental Research Laboratory, Hamamatsu Photonics K K
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TANI Masaharu
Laboratory of Plant Molecular Physiology, Department of Applied Biological Chemistry, The University
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YOSHIWARA Toshihiro
Department of Bio-Science, Central Research Institute of Electric Power Industry
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GOTO Fumiyuki
Department of Bio-Science, Central Research Institute of Electric Power Industry
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NISHIKAWA Naoko
Laboratory of Plant Biotechnology, Department of Global Agricultural Sciences, The University of Tok
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Takahashi Michiko
Laboratory of Plant Molecular Physiology, Department of Applied Biological Chemistry, The University
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UCHIDA Hiroshi
Central Research Laboratory, Hamamatsu Photonics
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Nishimura Mikio
Dept. Cell Biol. Natl. Inst. Basic Biol.
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Nishimura Mikio
Dept. Cell Biol. Nat. Inst. Basic Biol.
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Nishimura Mikio
Department Of Cell Biology National Institute For Basic Biology
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Hara-Nishimura Ikuko
Department of Botany, Graduate School of Science, Kyoto University
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Nishizawa Naoko
Core Research For Evolutional Science And Technology (crest) Japan Science And Technology Corporatio
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An Gynheung
Pohang University of Science and Technology
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Kubota Shigeo
Kubota Techno
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MORIKAWA Claudio
Environmental Science, Tohoku University
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KOBAYASHI Takanori
Dept. Bio-Science, Central Research Institute of Electric Power Industry
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HAYASHI Yasuko
Department of Cell Biology, National Institute for Basic Biology
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ISHIMARU Yasuko
Dept. Cell Biol., Nat. Inst. Basic Biol.
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YAMADA Kenji
Grad. Sch. Sci., Kyoto Univ.
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SHIMADA Tomoo
Grad. Sch. Sci., Kyoto Univ.
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MATSUSHIMA Ryo
Grad. Sch. Sci., Kyoto Univ.
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NISHIMURA Ikuko
Grad. Sch. Sci., Kyoto Univ.
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Kubota Shigeo
Kubota Opto-electronics Laboratory Core Technology Development Center Sony Corporation Core Technolo
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Hayashi Yasuko
Department Of Environmental Science Faculty Of Science Niigata University
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HARA(NISHIMURA) Ikuko
Department of Botany, Graduate School of Science, Kyoto University
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Shimada Tomoo
Department Of Biology Faculty Of Science Kobe University
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Ohata Tomoko
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Mihashi Shuichi
Laboratory of Plant Nutrition and Fertilizers, Department of Agricultural Chemistry, The University
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Takagi Sei-ichi
Department of Agricultural Chemistry, Iwate University
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Hara-nishimura Ikuko
Dept. Cell Biol. Nat. Inst. Basic. Biol.
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Hara Ikuko
Department Of Botany Graduate School Of Science Kyoto University
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Hara-nishimura Ikuko
Department Of Botany Graduate School Of Science Kyoto University
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Yamakawa Takashi
Department Of Aquatic Bioscience Graduate School Of Agricultural And Life Sciences The University Of
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Yamaguchi Isomaro
Faculty Of Agriculture University Of Tokyo
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Kobayashi Takanori
Dept. Bio-science Central Research Institute Of Electric Power Industry
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Yamaguchi Hirotaka
Laboratory of Plant Molecular Physiology, The University of Tokyo
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TAKAHASHI Michiko
Dept. Applied Biol. Chem., Tokyo Univ.
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NAKAGAWA Takuya
Dept. Appl Biol Chem, Tokyo Univ.
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NEGISHI Takashi
Dept. Appl Biol Chem, Tokyo Univ.
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TERADA Yasuko
Dept. Appl Chem, Science Univ of Tokyo
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NAKAI Izumi
Dept. Appl Chem, Science Univ of Tokyo
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YOSHIMURA Eturo
Dept. Appl Biol Chem, Tokyo Univ.
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MORI Satoshi
CREST.
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Suzuki Kazuya
CREST, Japan Science and Technology Corporation (JST)
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Higuchi Kyoko
CREST, Japan Science and Technology Corporation (JST)
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Kaneko Maiko
Laboratory of Plant Molecular Physiology, Department Applied Biological Chemistry The University of
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Yoshimura Etsuro
Laboratory of Plant Molecular Physiology, Department Applied Biological Chemistry The University of
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YOSHIMURA Etsuro
Dept. Appl. Biol. Chem., Univ. Tokyo
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NAKANISHI Hiromi
Lab, Plant. Mol. Physiol., The Univ. Tokyo
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NISHIZAWA Naoko-Kishi
Lab, Plant. Mol. Physiol., The Univ. Tokyo
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MORI Satoshi
Lab, Plant. Mol. Physiol., The Univ. Tokyo
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TAKAHASHI Michiko
Lab.Plant.Mol.Physiol., Tokyo Univ.
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YAMAGUCHI Hirotaka
Lab.Plant.Mol.Physiol., Tokyo Univ.
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NAKANISHI Hiromi
Lab.Plant.Mol.Physiol., Tokyo Univ.
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NISHIZAWA Naoko-Kishi
Lab.Plant.Mol.Physiol., Tokyo Univ.
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Yoshihara T
National Inst. Agrobiological Resources Ibaraki Jpn
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Saigusa Masahiko
Field Science Center Tohoku University
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Nishimura Mikio
Dep. Of Cell Biology National Inst. For Basic Biology
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Nishimura Ikuko
Grad. Sch. Sci. Kyoto Univ.
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Nakanishi Itai
Graduate School Of Agricultural And Life Sciences The University Of Tokyo:core Research For Evolutio
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Nakai Izumi
Dept. Appl Chem Science Univ Of Tokyo
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Kaneko Maiko
Laboratory Of Plant Molecular Physiology Department Applied Biological Chemistry The University Of T
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Ohata Tomoko
Laboratory Of Plant Nutrition And Fertilizers Department Of Agricultural Chemistry The University Of
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Oki Hiroyuki
Department Of Applied Biological Chemistyr The University Of Tokyo:(present Address)the Graduate Sch
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Tsukada Hideo
Pet Center Central Research Laboratory
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Tsukada Hideo
Central Research Laboratory Hamamatsu Photonics K.k.
著作論文
- Comparison of the functions of the barley nicotianamine synthase gene HvNAS1 and rice nicotianamine synthase gene OsNAS1 promoters in response to iron deficiency in transgenic tobacco(Plant Nutrition)
- Transgenic rice lines that include barley genes have increased tolerance to low iron availability in a calcareous paddy soil(Plant Nutrition)
- 10-1 GUS-staining analysis of the rice iron-deficiency-responsive element binding factors IDEF1 and IDEF2
- Synthesis of nicotianamine and deoxymugineic acid is regulated by OsIRO2 in Zn excess rice plants(Plant Nutrition)
- How are metal nutrients transported to the embryo in rice plant?
- Overcoming Fe deficiency in guava (Psidium guajava L.) by co-situs application of controlled release fertilizers(Fertilizer and Soil Amendments)
- ^Mn translocation in barley monitored using a positron-emitting tracer imaging system(Plant Nutrition)
- 9-22 Characterization of Glutathione transporter in rice
- Iron deficiency enhances cadmium uptake and translocation mediated by the Fe^ transporters OsIRT1 and OsIRT2 in rice(Plant Nutrition)
- Metabolic Engineering of Saccharomyces cerevisiae Producing Nicotianamine : Potential for Industrial Biosynthesis of a Novel Antihypertensive Substrate
- Construction of Artificial Promoters Highly Responsive to Iron Deficiency
- Directed Evolution of Yeast Ferric Reductase to Produce Plants with Tolerance to Iron Deficiency in Alkaline Soils
- A Rice FRD3-Like (OsFRDL1) Gene Is Expressed in the Cells Involved in Long-Distance Transport
- Diurnal Changes in the Expression of Genes That Participate in Phytosiderophore Synthesis in Rice
- H_2^O Translocation in Rice Was Enhanced by 10 μM 5-Aminolevulinic Acid as Monitored by Positron Emitting Tracer Imaging System (PETIS)
- Analysis of Upstream Region of Nicotianamine Synthase Gene from Arabidopsis thaliana : Presence of Putative ERE-like Sequence(Biochemistry & Molecular Biology)
- The Expression of a Barley HvNAS1 Nicotianamine Synthase Gene Promoter-gus Fusion Gene in Transgenic Tobacco is Induced by Fe-deficiency in Roots(Biochemistry & Molecular Biology)
- Analysis of Transgenic Rice Containing Barley Nicotianamine Synthase Gene
- ID17,A NEW IRON-REGULATED ABC TRANSPORTER FROM BARLEY ROOTS, LOCALIZED TO THE TONOPLAST
- ANALYSIS OF UPSTREAM REGION OF NICOTIANAMINE SYNTHASE GENES FROM Arabidopsis thaliana (II)
- P11-12 Low cadmium (LCD), a novel gene related to cadmium tolerance and accumulation in rice seeds
- Technical Advance: An Automated Device for Cryofixation of Specimens of Electron Microscopy using Liquid Helium
- AUTOMATED DEVICE FOR CRYOFIXATION OF ELECTRON MICROSCOPIC SPECIMEN AT LIQUID HELIUM TEMPERATURE
- A Proteinase-Storing Body that Prepares for Cell Death or Stresses in the Epidermal Cells of Arabidopsis
- A NOVEL LARGE BODY THAT IS DERIVED FROM ENDOPLASMIC RETICULUM
- Establishment of a Cell-Free System for the Biosynthesis of Nicotianamine
- Induction of Adenine Phosphoribosyltransferase (APRT) in Iron-deficient Barley Roots
- Biosynthetic Pathway of Phytosiderophores in Iron-Deficient Graminaceous Plants : Development of an Assay System for the Detection of Nicotianamine Aminotransferase Activity
- Cross-Reactivities of Anti-Nicotianamine Antibody with Mugineic Acid and Related Compounds
- IN-VIVO IDENTIFICATION OF MUGINEIC ACID SYNTHASE GENE USING TRANSGENIC RICE
- Induction of the IDI1 Gene in Fe-Deficient Barley Roots: A Gene Encoding a Putative Enzyme That Catalyses the Methionine Salvage Pathway for Phytosiderophore Production
- ISOLATION OF A cDNA FOR AN FE-DEFICIENCY INDUCIBLE LIPOXYGENASE ISOFORM FROM BARLEY
- ANALYSIS OF UPSTREAM REGION OF NICOTIANAMINE SYNTHASE GENES FROM Arabidopsis thaliana
- TRANSGENIC RICE AND TOBACCO CONTAINING CaMV35S-NICOTIANAMINE SYNTHASE GENE (HVNAS1)
- THE TOBACCO OVEREXPRESSED WITH NAAT-A GENE SHOWED INTERCOSTAL CHLOROSIS
- Cloning of Nicotianamine Synthase Genes from Arabidopsis thaliana
- Time Course Study of Aluminum-Induced Callose Formation in Barley Roots as observed by Digital Microscopy and Low-Vacuum Scanning Electron Microscopy
- Presence of Nicotianamine Synthase Isozymes and Their Homologues in the Root of Graminaceous Plants
- Conforcal Images of Adenine Phosphoribosyltransferase (APRT) Fused to sGFP in Plant Cells
- THE FUNCTIONAL ANALYSIS OF BARLEY SFD1 GENE, A SUPPRESSOR OF YEAST COPPER UPTAKE MUTANT ctr 1
- CLONING AND CHARACTERIZATION OF NICOTIANAMINE SNTHASE GENES FROM Arabidopsis thaliana
- CLONING OF NICOTIANAMINE SYNTHASE GENES (nas) FROM GRAMINACEOUS PLANTS
- DEVELOPMENT OF THE TRANSGENIC RICE OVEREXPRESSING NICOTIANAMINE AMINOTRANSFERASE
- Characterizing Nicotianamine Aminotransferase : Improving Its Assay System and Details of the Regulation of Its Activity by Fe Nutrition Status
- THE FUNCTIONAL ANALYSIS OF SFD1 GENE, WHICH RESTORES THE MUTATION OF YEAST COPPER UPTAKE MUTANT ctr1
- STUDY ON THE BIOSYNTHETIC PATHWAY OF MUGINEIC ACID IN Fe-DEFICIENT BARLEY ROOTS VI : SEQUENCE AND EXPRESSION OF NICOTIANAMINE AMINOTRANSFERASE GENE
- ^Fe Translocation in Barley as Monitored by a Positron-Emitting Tracer Imaging System (PETIS) : Evidence for the Direct Translocation of Fe from Roots to Young Leaves via Phloem
- A Highly Sensitive, Quick and Simple Quantification Method for Nicotianamine and 2'-Deoxymugineic Acid from Minimum Samples Using LC/ESI-TOF-MS Achieves Functional Analysis of These Components in Plants
- 10-13 ミャンマーのイネ品種の種子における微量栄養素の解析(10.植物の微量栄養素,2010年度北海道大会)
- Highly Sensitive Quantitative Analysis of Nicotianamine Using LC/ESI-TOF-MS with an Internal Standard
- Rice phenolics efflux transporter 2 (PEZ2) plays an important role in solubilizing apoplasmic iron(Plant nutrition)