Shinozaki K | Riken Ibaraki Jpn
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概要
関連著者
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Shinozaki K
Riken Ibaraki Jpn
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Shinozaki K
Riken Plant Sci. Center Yokohama Jpn
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Shinozaki K
Inst. Physical And Chemical Res. (riken) Ibaraki Jpn
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SHINOZAKI Kazuo
Plant Mol. Biol. RIKEN
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Seki Motoaki
Plant Mutation Exploration Team Plant Functional Genomics Research Group Genomic Sciences Center Rik
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Katagiri T
Plant Mutation Exploration Team Plant Functional Genomics Research Group Genomic Sciences Center Rik
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平山 隆志
Plant Mutation Exploration Team Plant Functional Genomics Research Group Genomic Sciences Center Rik
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Seki M
Riken Yokohama Inst. Kanagawa Jpn
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SEKI Motoaki
Plant Functional Genomics Research Group, RIKEN Genomic Sciences Center
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SHINOZAKI Kazuo
Laboratory of Plant Molecular Biology, RIKEN Tsukuba Institute
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Shinozaki Kazuo
Riken Ibaraki Jpn
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Saito Kazuki
RIKEN Plant Science Center
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Ohme Takagi
Research Institute Of Genome-based Biofactory National Institute Of Advanced Industrial Science And
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SAWADA Yuji
RIKEN Plant Science Center
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YOKOTA HIRAI
RIKEN Plant Science Center
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MATSUI Minami
RIKEN Plant Science Center
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Aida Ryutaro
National Institute Of Floricultural Science National Agricultural Research Organization
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SHINOZAKI Kazuo
Lab. of Plant Mol. Biol., RIKEN
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MATSUI Minami
Plant Function Exploration Team, Plant Functional Genomics Research Group
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Yamashino Takafumi
Nagoya Univ. Nagoya Jpn
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Ito Takuya
Laboratory Of Plant Molecular Biology Riken Tsukuba Institute
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Narusaka M
Kobe Univ. Graduate School Of Sci. And Technol. Kobe Jpn
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Yamashino T
Nagoya Univ. Nagoya Jpn
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Matsui Akihiro
Tohoku Univ. Sendai Jpn
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Matsui Minami
Plant Function Exploration Team Plant Functional Genomics Group Genomic Sciences Center Riken Yokoha
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Matsui Minami
Plant Function Exploration Team Plant Functional Genomics Research Group Genomic Sciences Center Rik
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Matsui Minami
Plant Function Exploration Team Gsc
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ISHIDA Junko
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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KOBAYASHI Masatomo
Experimental Plant Division, RIKEN Bio Resource Center
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NARUSAKA Mari
Research Institute for Biological Sciences (RIBS) Okayama
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KUROMORI Takashi
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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吉田 静夫
北大低温研
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脇谷 尚樹
東京工業大学工学部無機材料工学科
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吉田 静夫
Discovery Res. Inst. Riken
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吉田 静夫
北海道大学低温科学研究所
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吉田 静夫
北大・低温研
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脇谷 尚樹
東京工大 大学院理工学研究科
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SHIMODA Yoshikazu
Kazusa DNA Research Institute
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ASAMI Tadao
Riken
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KOJIMA Mikiko
RIKEN Plant Science Center
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Sakakibara Hitoshi
Riken (the Institute Of Physical And Chemical Research) Plant Science Center
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Fujioka S
Discovery Res. Inst. Riken
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Fujioka Shozo
Riken (the Inst. Of Physical And Chemical Research)
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Fujioka Shozo
Discovery Research Institute Riken
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FUJITA Miki
Plant Functional Genomics Research Group, RIKEN Genomic Sciences Center
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Asami T
Dep. Of Applied Biological Chemistry Univ. Of Tokyo
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Asami T
The Inst. Physical And Chemical Res.(riken) Saitama Jpn
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Yoshida S
Riken Kanagawa Jpn
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Suzuki Yoshikatsu
Plant Science Center Riken Institute
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YOSHIDA Shigeo
Institute of Physical and Chemical Research
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SEKI Motoaki
Laboratory of Plant Molecular Biology, RIKEN Tsukuba Institute
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KAMIYA Asako
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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NARUSAKA Yoshihiro
Research Institute for Biological Sciences (RIBS) Okayama
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ITO Takuya
Plant Molecular Biology Laboratory, RIKEN Tsukuba Institute
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MOTOHASHI Reiko
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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Yamaguchi J
Faculty Of Advanced Life Science And Graduate School Of Life Science Hokkaido University
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Shimada Hiroshi
Third Department Of Internal Medicine
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SAKAKIBARA Hitoshi
Plant Science Center, RIKEN (Institute of Physical and Chemical Research)
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Sakakibara Hitoshi
Riken Plant Sci. Center
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小野 道之
Graduate School Of Life And Environmental Sciences University Of Tsukuba
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Fujita Miki
Plant Mutation Exploration Team Plant Functional Genomics Research Group Riken Genomic Sciences Cent
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Mizutani Masaharu
Institute for Chemical Research, Kyoto University
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Asami Tadao
Department of Applied Biological Chemistry, University of Tokyo
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SHIMADA Yukihisa
RIKEN
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Sakata Kanzo
Institute for Chemical Research, Kyoto University
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Yoshida S
Discovery Research Institute Riken
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Hara Toru
Corporate Technol. Planning Dep. Res. And Dev. Lab. Taiyo Yuden Co. Ltd.
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Sako Kaori
Faculty Of Advanced Life Science And Graduate School Of Life Science Hokkaido University
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Aida Ryutaro
National Institute Of Floricultural Science National Agriculture And Food Research Organization
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Sato Masakazu
Plant Mutation Exploration Team Plant Functional Genomics Research Group Riken Genomic Sciences Cent
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Yoshida S
Laboratory Of Cancer Cell Biology Research Institute For Disease Mechanism And Control Nagoya Univer
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SAKURAI Tetsuya
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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SATOU Masakazu
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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OHTSUBO Norihiro
National Institute of Crop Science
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NOUTOSHI Yoshiteru
Plant Molecular Biology Laboratory, RIKEN Tsukuba Institute
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MIZUKADO Saho
Plant Molecular Biology Laboratory, RIKEN Tsukuba Institute
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Kikuchi Jun
RIKEN Plant Science Center
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SUZUKI Hisao
Graduate School of Science and Technology, Shizuoka University
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YASUDA Michiko
Plant Aquired Immmunity Research Unit, Advanced Science Institute, RIKEN
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NAKASHITA Hideo
Plant Aquired Immmunity Research Unit, Advanced Science Institute, RIKEN
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KANAYA Shigehiko
Graduate School of Information Science, Nara Institute of Science and Technology
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岡田 清孝
京大 大学院理学研究科
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MURAI Koji
Department of Bioscience, Fukui Prefectural University
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KAWAI Kiyoshi
Life Science Research Institute, Kumiai Chemical Industry Co., Ltd.
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IZAWA Norihiko
Life Science Research Institute, Kumiai Chemical Industry Co., Ltd.
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ISHII Tadashi
Forestry and Forest Products Research Institute
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YOSHIDA Shigeo
RIKEN, Plant Science Center
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Kato Takahiko
Kazusa Dna Research Institute
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Tanaka K
Institue Of Molecular And Cellular Biosciences The University Of Tokyo
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Matsunaga Toshiro
National Agricultural Research Center For Kyusyu Okinawa Region
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SHINBO Yoko
Graduate School of Information Science, Nara Institute of Science and Technology
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KATO Tomohiko
Kazusa DNA Research Institute
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Shimada H
Tokyo Univ. Sci. Chiba Jpn
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Shimada Hiroaki
Department Of Biological Science And Technology Tokyo University Of Science
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東 四郎
Department Of Chemistry And Bioscience Faculty Of Science Kagoshima University
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Ito Shogo
Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University
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Nakamichi Norihito
Division of Biological Science, Graduate School of Science, Nagoya University
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YAMASHINO Takafumi
Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University
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MIZUNO Takeshi
Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University
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SAKAKIBARA Hitoshi
RIKEN Plant Science Center
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AOKI Koh
Plant Science Center, RIKEN (Institute of Physical and Chemical Research)
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FUJIOKA Shozo
Discovery Research Institute, RIKEN
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YOSHIDA Shigeo
Discovery Research Institute, RIKEN
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HIGUCHI Mieko
RIKEN Plant Science Center
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KURIYAMA Tomoko
RIKEN Plant Science Center
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HARA Hiroko
RIKEN Plant Science Center
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YOSHIZUMI Takeshi
Plant Function Exploration Team, Plant Functional Genomics Research Group
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Tabata Satoshi
Kazusa Dna Res. Inst. Chiba Jpn
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Sakakibara Hitoshi
Dept.appl.biol.sci. Sch.agr.sci. Nagoya Univ.
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柿本 辰男
Department Of Biology Graduate School Of Science Osaka University
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Nakamichi Norihito
Riken Yokohama Jpn
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Nakamichi Norihito
Division Of Biological Science Graduate School Of Science Nagoya University
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Kohara Yuji
Genome Biology Laboratory Center For Genetic Resource Information National Institute Of Genetics
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KAMIYA Yuji
Plant Hormone Function, Frontier Research Program, RIKEN
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KITA Masanori
Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University
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Uno Yuichi
Plant Resource Science, Graduate School of Agricultural Science, Kobe University
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Nanjo Tokihiko
Genesis Research Institute Inc.:plant Mol. Biol. Riken
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Nanjo Tokihiko
Department Of Molecular And Cell Biology Forestry And Forest Products Research Institute
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Kaneko Takakazu
Department Of Life Science Faculty Of Agriculture Kagawa University
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KOBAYASHI Masatomo
RIKEN, Tsukuba Life Science Ctr.
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Han Sun-young
Discovery Res. Inst. Riken
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Kinoue Tomoyo
Kagoshima Univ. Kagoshima Jpn
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Asami Tadao
Plant Function Laboratory The Institute Of Physical And Chemical Research (riken)
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RYUTO Hiromichi
Beam Technology Team, Nishina Accelerator Research Center, RIKEN
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FUKUNISHI Nobuhisa
Beam Technology Team, Nishina Accelerator Research Center, RIKEN
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ABE Tomoko
Radiation Biology Team, Nishina Accelerator Research Center, RIKEN
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Qin Feng
Department Of Analytical Chemistry Shenyang Pharmaceutical University
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Qin F
Department Of Biological Sciences And Biotechnology Tsinghua University
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Ito Shogo
Nagoya Univ. Nagoya Jpn
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Liu Quian
Department Of Biological Sciences And Biotechnology Tsinghua University
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Liu Qiang
Department Of Hygiene Hirosaki University School Of Medicine
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Kamiya Y
Plant Science Center Riken
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Kamiya Y
Riken Plant Science Center
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Sonoda Yutaka
Faculty Of Advanced Life Science And Graduate School Of Life Science Hokkaido University
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Mizuno Takeshi
Laboratory Of Molecular Microbiology School Of Agriculture Nagoya University
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Nagatani Akira
Division Of Biological Regulation National Institute For Basic Biology:(permanent)department Of Biol
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長谷 あきら
京都大学大学院理学研究科
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Moritz Thomas
Umea Plant Centre, SLU, Sweden
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Okada Kiyotaka
Faculty Of Science Kyoto University
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Okada K
Kinki Univ. School Of Medicine Osaka Jpn
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Ishiguro Sumie
Dept. Bot. Grad. Sch. Sci. Kyoto Univ.
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Ishiguro Sumie
Department Of Biological Mechanisms And Functions Graduate School Of Bioagricultural Sciences Nagoya
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SAKO Kaori
Faculty of Advanced Life Science and Graduate School of Life Science, Hokkaido University
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YAMAGUCHI Junji
Faculty of Advanced Life Science and Graduate School of Life Science, Hokkaido University
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Nakasone Shoko
Univ. Tokyo Tokyo Jpn
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Tabata S
Kazusa Dna Res. Inst. Chiba Jpn
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Shinohara Kenji
Department of Medicine, Yamaguchi Prefectural Medical Center
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Asada Yutaka
Faculty of Science and Graduate School of Life Science, Hokkaido University
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Tsutsui Tomokazu
Faculty of Science and Graduate School of Life Science, Hokkaido University
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Niki Tomoya
National Institute of Agrobiological Resources
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Mizuno Takeshi
Lab. Of Molecular Microbiology School Of Agriculture Nagoya Univ.
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Mizuno T
Laboratory Of Molecular Microbiology School Of Agriculture Nagoya University
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YONEYAMA Koichi
Weed Sci. Center, Utsunomiya Univ
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Aoki K
Plant Science Center Riken (the Institute Of Physical And Chemical Research)
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Aoki Koh
Plant Science Center Riken (institute Of Physical And Chemical Research)
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Abe Tomoko
Radiation Biology Team Nishina Accelerator Research Center Riken
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Abe Tomoko
Riken Saitama Jpn
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Shinbo Yoko
Graduate School Of Information Science Nara Institute Of Science And Technology
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Asada Yutaka
Division Of Biological Sciences Graduate School Of Science Hokkaido University
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Mori Masaki
National Institute Of Agrobiological Resources Tsukuba
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Matsui Minami
Riken Gsc Wako-shi
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Kita Masanori
Nagoya Univ. Nagoya Jpn
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Moritz Thomas
Umea Plant Science Centre Department Of Forest Genetics And Plant Physiology Swedish University Of A
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Moritz Thomas
Umea Plant Centre Slu Sweden
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Kaku Koichiro
Life Science Research Institute Kumiai Chemical Industry Co. Ltd.
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Matsuda Fumio
Riken Plant Science Center
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Hirai Nobuhiro
International Innovation Center Kyoto University
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Ishiguro Sumie
Dept. Botany Grad. Sch. Sci. Kyoto Univ.
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Izawa Norihiko
Life Science Research Institute Kumiai Chemical Industry Co. Ltd.
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Izawa Norihiko
Kumiai Chemical Industry Co. Ltd.
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Yoshida Shigeo
Riken
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Murai Koji
Department Of Bioscience Fukui Prefectural University
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Murai Koji
Department Of Biosciences Fukui Prefectural University
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HAYASHI Yoriko
RIKEN Nishina Center
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RYUTO Hiromichi
RIKEN Nishina Center
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FUKUNISHI Nobuhisa
RIKEN Nishina Center
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Takahashi Seiji
Laboratory Of Plan Molecular Biology Riken Tsukuba Institute
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篠原 健司
森林総合研
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NISHIGUCHI Mitsuru
Department of Molecular and Cell Biology, Forestry and Forest Products Research Institute
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IGASAKI Tomohiro
Department of Molecular and Cell Biology, Forestry and Forest Products Research Institute
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FUTAMURA Norihiro
Department of Molecular and Cell Biology, Forestry and Forest Products Research Institute
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NAKAZAWA Miki
Plant Function Exploration Team, Plant Functional Genomics Research Group, Riken Genomics Sciences C
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Kato Tomohiko
Kazusa Dna Res. Inst.
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Kato Tomohiko
Mitsui Plant Biotech. Res. Inst.
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Asami Tadao
Plant Funct. Lab.
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Asami Tadao
Plant Functions Riken Wako Institute
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NANJO Tokihiko
Plant Mol. Biol. RIKEN
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Ikeda Akira
Faculty of Advanced Life Science and Graduate School of Life Science, Hokkaido University
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TANAKA Yoshikazu
Institute for Geothermal Sciences Graduate School of Science, Kyoto University
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Yamaguchi-Shinozaki Kazuko
Biological Resources Division, Japan International Research Center for Agricultural Sciences(JIRCAS)
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Ikeda Akira
Faculty Of Advanced Life Science And Graduate School Of Life Science Hokkaido University
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SAGE ONO
Graduate School of Life and Environmental Sciences, University of Tsukuba
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NARUSAKA Yoshihiro
Kobe University Graduate School of Science and Technology
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NARUSAKA Mari
Kobe University Graduate School of Science and Technology
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NAKASHIMA Maiko
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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ENJU Akiko
Plant Mutation Exploration Team, Plant Functional Genomics Research Group, RIKEN Genomic Sciences Ce
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PARK Pyoyun
Kobe University Graduate School of Science and Technology
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Carninci Piero
Genome Exp. Res.
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Hayashizaki Yoshihide
Genome Exp. Res.
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TAKEI Kentaro
Plant Science Center, RIKEN (The Institute of Physical and Chemical Research)
著作論文
- Preparation of hydroxyapatite–ferrite composite particles by ultrasonic spray pyrolysis
- Characterization of Full-length Enriched Expressed Sequence Tags of Stress-treated Poplar leaves
- Expression Profiles of Arabidopsis Phospholipase A IIA Gene in Response to Biotic and Abiotic Stresses
- A Resource of 5,814 Dissociation Transposon-tagged and Sequence-indexed Lines of Arabidopsis Transposed from Start Loci on Chromosome 5
- AtIPT3 is a Key Determinant of Nitrate-Dependent Cytokinin Biosynthesis in Arabidopsis
- Expression and Interaction Analysis of Arabidopsis Skp1-Related Genes
- Hyperosmotic Stress Induces a Rapid and Transient Increase in Inositol 1,4,5-Trisphosphate Independent of Abscisic Acid in Arabidopsis Cell Culture
- Analysis of ABA-dependent regulation of drought-responsive gene expression by bZIP transcription factor AREB in Arabidopsis
- Isolation and Characterization of Novel Mutants Affecting the Abscisic Acid Sensitivity of Arabidopsis Germination and Seedling Growth
- A Novel Ethanol-Hypersensitive Mutant of Arabidopsis
- A Novel Arabidopsis Gene Required for Ethanol Tolerance is Conserved Among Plants and Archaea
- DNA Microarray Analysis of Plastid Gene Expression in an Arabidopsis Mutant Deficient in a Plastid Transcription Factor Sigma, SIG2
- Doping effect of Dy on leakage current and oxygen sensing property of SrTiO3 thin film prepared by PLD
- Activation Energy of Oxygen Vacancy Diffusion of Yttria-Stabilized-Zirconia Thin Film Determined from DC Current Measurements below 150℃
- Functional Analysis of Rice DREB1/CBF-type Transcription Factors Involved in Cold-responsive Gene Expression in Transgenic Rice
- Construction of a full-length cDNA library from young spikelets of hexaploid wheat and its characterization by large-scale sequencing of expressed sequence tags
- Mapping of Ds-transposon insertion sites transposed from start lines on Arabidopsis chromosome 5
- Accumulation of Proline in the transgenic Arabidopsis overexpressing the DREB1A gene
- Cloning and Functional Analysis of a Novel DREB1/CBF Transcription Factor Involved in Cold-Responsive Gene Expression in Zea mays L
- Phenome analysis of root development in Arabidopsis
- Development of a novel method for characterization of cereals by spectral phenotyping
- ALBINO AND PALE GREEN 10 Encodes BBMII Isomerase Involved in Histidine Biosynthesis in Arabidopsis thaliana
- ABA-Activated SnRK2 Protein Kinase is Required for Dehydration Stress Signaling Arabidopsis
- Oxidative Stress Activates ATMPK6, an Arabidopsis Homologue of MAP Kinase
- Promoter analysis of erd1 : An Arabidopsis ClpAhomologous-gene, up-regulated in response to dark-induced senescence and dehydration stress
- Isolation of Arabidopsis DREB homologues that are involved in dehydration, cold and salt response, and functional analysis of DREB2A using Arabidopsis T-DNA insertion mutant
- CONSTRUCTION OF A FULL-LENGTH cDNA LIBRARY OF Arabidopsis thaliana USING BIOTINYLATED CAP TRAPPER
- High-efficiency improvement of transgenic torenia flowers by ion beam irradiation
- FioreDB : a database of phenotypic information induced by the chimeric repressor silencing technology (CRES-T) in Arabidopsis and floricultural plants
- A lead compound for the development of ABA 8″-hydroxylase inhibitors
- Differences between the structural requirements for ABA 8″-hydroxylase inhibition and for ABA activity
- Cytological and Biochemical Analysis of COF1, an Arabidopsis Mutant of an ABC Transporter Gene
- A Plant Growth Retardant, Uniconazole, Is a Potent Inhibitor of ABA Catabolism in Arabidopsis
- DEAR1, a transcriptional repressor of DREB protein that mediates plant defense and freezing stress responses in Arabidopsis
- Toward genome-wide metabolotyping and elucidation of metabolic system : metabolic profiling of large-scale bioresources
- Application of a metabolomic method combining one-dimensional and two-dimensional gas chromatography-time-of-flight/mass spectrometry to metabolic phenotyping of natural variants in rice
- Transcript Profiling of an Arabidopsis PSEUDO RESPONSE REGULATOR Arrhythmic Triple Mutant Reveals a Role for the Circadian Clock in Cold Stress Response
- Transcriptome Analyses Revealed Diverse Expression Changes in ago1 and hyl1 Arabidopsis Mutants
- PosMed-plus : An Intelligent Search Engine that Inferentially Integrates Cross-Species Information Resources for Molecular Breeding of Plants
- Alterations of Lysine Modifications on the Histone H3 N-Tail under Drought Stress Conditions in Arabidopsis thaliana
- Arabidopsis Transcriptome Analysis under Drought, Cold, High-Salinity and ABA Treatment Conditions using a Tiling Array
- Three SnRK2 Protein Kinases are the Main Positive Regulators of Abscisic Acid Signaling in Response to Water Stress in Arabidopsis
- Omics-Based Approaches to Methionine Side Chain Elongation in Arabidopsis : Characterization of the Genes Encoding Methylthioalkylmalate Isomerase and Methylthioalkylmalate Dehydrogenase
- Auxin Biosynthesis Inhibitors, Identified by a Genomics-Based Approach, Provide Insights into Auxin Biosynthesis
- Arabidopsis Bile Acid:Sodium Symporter Family Protein 5 is Involved in Methionine-Derived Glucosinolate Biosynthesis
- Widely Targeted Metabolomics Based on Large-Scale MS/MS Data for Elucidating Metabolite Accumulation Patterns in Plants
- ABA Hypersensitive Germination2-1 Causes the Activation of Both Abscisic Acid and Salicylic Acid Responses in Arabidopsis
- Three Arabidopsis SnRK2 Protein Kinases, SRK2D/SnRK2.2, SRK2E/SnRK2.6/OST1 and SRK2I/SnRK2.3, Involved in ABA Signaling are Essential for the Control of Seed Development and Dormancy
- Phenome Analysis in Plant Species Using Loss-of-Function and Gain-of-Function Mutants
- The Glycerophosphoryl Diester Phosphodiesterase-Like Proteins SHV3 and its Homologs Play Important Roles in Cell Wall Organization
- Aging effect on oxygen-sensitive electrical resistance of SrTiO3 thin films
- Two Closely Related Subclass II SnRK2 Protein Kinases Cooperatively Regulate Drought-Inducible Gene Expression
- ABA-mediated transcriptional regulation in response to osmotic stress in plants (JPR symposium: Opening a new era of ABA research)
- Visualization of metabolite identifier information
- Brz220 Interacts with DWF4, a Cytochrome P450 Monooxygenase in Brassinosteroid Biosynthesis, and Exerts Biological Activity
- Arabidopsis Seedlings Over-Accumulated Indole-3-acetic Acid in Response to Aminooxyacetic Acid
- Efficient Yeast One-/Two-Hybrid Screening Using a Library Composed Only of Transcription Factors in Arabidopsis thaliana
- Molecular Basis of the Core Regulatory Network in ABA Responses : Sensing, Signaling and Transport
- The new FioreDB database provides comprehensive information on plant transcription factors and phenotypes induced by CRES-T in ornamental and model plants
- Efficient production of novel floral traits in torenia by collective transformation with chimeric repressors of Arabidopsis transcription factors
- Trehalose drastically extends the in vitro vegetative culture period and facilitates maintenance of Torenia fournieri plants
- Utilization of a floral organ-expressing AP1 promoter for generation of new floral traits in Torenia fournieri Lind
- Arabidopsis chimeric TCP3 repressor produces novel floral traits in Torenia fournieri and Chrysanthemum morifolium
- Origin and evolution of genes related to ABA metabolism and its signaling pathways
- ABA-mediated transcriptional regulation in response to osmotic stress in plants
- RiceFOX : A Database of Arabidopsis Mutant Lines Overexpressing Rice Full-Length cDNA that Contains a Wide Range of Trait Information to Facilitate Analysis of Gene Function
- Arabidopsis RPT2α Encoding the 26S Proteasome Subunit is Required for Various Aspects of Root Meristem Maintenance, and Regulates Gametogenesis Redundantly with its Homolog, RPT2b
- Gene coding for SigA-binding protein from Arabidopsis appears to be transcriptionally up-regulated by salicylic acid and NPR1-dependent mechanisms
- An ABRE Promoter Sequence is Involved in Osmotic Stress-Responsive Expression of the DREB2A Gene, Which Encodes a Transcription Factor Regulating Drought-Inducible Genes in Arabidopsis
- Sugar-inducible RPT2a, a subunit of 26S proteasome, participates in sugar response in Arabidopsis