Tsukaya Hirokazu | National Inst. Basic Biology Aichi Jpn
スポンサーリンク
概要
関連著者
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塚谷 裕一
東大 基礎生物学研
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Tsukaya Hirokazu
Plant Biology Research Center Chubu University:college Of Bioscience And Biotechnology Chubu Univers
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塚谷 裕一
基礎生物学研究所
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Tsukaya H
Biological Sciences Graduate School Of Science University Of Tokyo
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TSUKAYA Hirokazu
National Institute for Basic Biology (NIBB) and Center for Integrated Bioscience, Okazaki Research I
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Machida Yasunori
Division Of Biological Science Graduate School Of Science Nagoya University
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Machida C
College Of Bioscience And Biotechnology Chubu University
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MACHIDA Yasunori
Division of Biological Science, Graduate School of Science, Nagoya University
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Machida Y
Nagoya Univ. Nagoya Jpn
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TSUKAYA Hirokazu
Inst.Mol.Cell.Biosci., Univ.of Tokyo
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HORIGUCHI Gorou
National Institute for Basic Biology, Center for Integrated Bioscience
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Yokoyama J
Tohoku Univ. Sendai Jpn
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Yokoyama Jun
Department Of Biology Faculty Of Science Yamagata University
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内宮 博文
東大 分子細胞生物学研
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KIM Gyung-Tae
National Institute for Basic Biology
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塚谷 裕一
東京大・分子細胞生物学研究所
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MACHIDA Yasunori
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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TSUKAYA Hirokazu
Department of Biosystems Science, School of Advanced Sciences, The Graduate University for Advanced
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Machida Chiyoko
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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Machida Yasunori
Div. Biol. Grad. Sch. Sci. Nagoya Univ.
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Yokoyama Jun
Department of Biology, Faculty of Science, Yamagata University
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Ishikawa Naoko
National Inst. Natural Sci. Okazaki Jpn
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UCHIMIYA Hirofumi
Inst. Mol. Cell. Biosci, Univ. of Tokyo
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Kim Gyung-tae
Department Of Molecular Biotechnology Dong-a University
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Iwakawa Hidekazu
Plant Biology Research Center, Chubu University
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Iwakawa Hidekazu
Plant Biology Research Center Chubu University
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Onouchi Hitoshi
Division Of Biological Science Graduate School Of Science Nagoya University
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塚谷 裕一
National Institute for Basic Biology, Okazaki National Research Institute
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柘植 知彦
東京大・分子細胞生物学研究所
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TSUKAYA Hirokazu
Graduate School of Science, University of Tokyo
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WATANABE Daisuke
Divison of Biological Science, Graduate School of Science, Nagoya University
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ONOUCHI Hitoshi
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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Semiarti Endang
Faculty Of Biology Gadjah Mada University
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Tsukaya Hirokazu
Graduate School Of Science The University Of Tokyo
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池田 博
岡山理科大学総合情報学部生物地球システム学科
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FUKUDA Tatsuya
JST Innovation Satellite Kochi
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横山 潤
東北大学
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Nakano A
Mol. Membr. Biol. Lab. Riken
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UEDA Takashi
Mol. Membr. Biol. Lab., RIKEN
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UEDA Takashi
Inst. Mol. Cell. Biosci., Univ. of Tokyo
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NAKANO Akihiko
Dept.Biol.Sci., Univ.of Tokyo
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横山 潤
東北大学大学院生命科学研究科
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福田 裕穂
東大 大学院理学系研究科
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福田 裕穂
東京大学大学院理学系研究科
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MOHAMED Maryati
Institute for Tropical Biology and Conservation, Universiti Malaysia Sabah
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池田 博
東京大総合研究博物館
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Kubo Minoru
Plant Science Center Riken
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塚谷 裕一
自然科学研究機構・基礎生物学研究所
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TSUKAYA Hirokazu
Center fof Integrative Bioscience
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塚谷 裕一
東京大学・分子細胞生物学研究所
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内宮 博文
東京大学・分子細胞生物学研究所
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内宮 博文
東京大・分子細胞生物学研究所
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池田 博
岡山理科大学
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福田 裕穂
東大 理 植物園
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出村 拓
理研 植物科学研究セ
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Demura Taku
Department Of Biological Sciences Graduate School Of Science University Of Tokyo
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Demura Taku
Department Of Biological Sciences Graduate School Of Science The University Of Tokyo
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Demura Taku
Plant Sci. Centre
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Ueda Takashi
Mol. Membr. Biol. Lab. Riken
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Fukuda Hiroo
Department Of Biological Sciences Graduate School Of Science University Of Tokyo
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Kim Gyung-tae
Inst. Mol. Cell. Biosci Univ. Tokyo
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Ueno Y
Nagoya Univ. Nagoya Jpn
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Fukuda Tatsuya
Forestry Science Institute Graduate School Of Agriculture Kochi University
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Fukuda Tatsuya
Department Of Ecology And Evolutionary Biology Graduate School Of Life Sciences Tohoku University
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IWAKAWA Hidekazu
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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Tsukaya Hirokazu
Univ. Tokyo Tokyo Jpn
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WATANABE Masaru
Division of Biological Science, Nagoya University
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MACHIDA Chiyoko
College of Bioscience and Biotechnology, Chubu University and CREST, Japan Science and Technology Ag
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HORIGUCHI Gorou
Department of Basic Biology, School of Life Science, The Graduate University for Advanced Studies
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SEMIARTI Endang
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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WATANABE Daisuke
Div. Biol. Sci., Grad. Sch. Sci., Kyoto Univ.
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TANAKA Hirokazu
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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OHBA Hideaki
University Museum, University of Tokyo
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Iwakawa Hidekazu
Div. Biol. Sci. Grad. Sch. Sci. Nagoya Univ.
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Uchimiya Hirofumi
Inst. Mol. Cell. Biosci. Univ. Of Tokyo
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Kojima S
College Of Bioscience And Biotechnology Chubu University And Crest Japan Science And Technology Corp
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Tsuge Tomohiko
Inst. Mol. Cell. Biosci. Univ. Of Tokyo
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MURATA JIN
Botanical Gardens, Graduate School of Sciences, the University of Tokyo
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Kato Masahiro
Department of Chemical Engineering, Faculty of Engineering, Kyushu University
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藤岡 宏樹
東京慈恵会医科大学
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Tanaka Toshihiro
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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内宮 博文
東大・分生研
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柘植 知彦
東京大学分子細胞生物学研究所
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塚谷 裕一
東京大学分子細胞生物学研究所
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Wada Keishiro
Fac. Sci. Kanazawa Univ.
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Niwa Yasuo
Laboratory Of Plant Cell Technology And Coe Program In The 21st Century Graduate School Of Nutrition
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塚谷 裕一
東大・分生研
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今市 涼子
日本女子大学
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武 素功
Kunming Institute Of Botany Chinese Academy Of Sciences
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Koizumi Yayoi
Graduate School Of Life Sciences Tohoku University
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MATSUDA Noriyuki
Dept.Biol.Sci., Univ.of Tokyo
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ANAI Toyoaki
Inst.Appli.Biochem., Univ.of Tsukuba
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Shindo Takayuki
Department of Cardiovascular Medicine, Graduate School of Medicine, The University of Tokyo
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MURATA Satoshi
Department of Surgery, Shiga University of Medical Science
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横山 潤
Department Of Biology Faculty Of Science Yamagata University
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秋山 忍
Department of Botany, National Science Museum
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UENO Yoshihisa
Div. Integrated Life Science, Grad. Sch. of Agriculture, Kyoto Univ.
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FUKUDA Hiroo
Department of Biological Sciences, Graduate School of Science, The University of Tokyo
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DEMURA Taku
Plant Science Center, RIKEN
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金 〓泰
東京大学・分子細胞生物学研究所
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Nanjo Tokihiko
Genesis Research Institute Inc.:plant Mol. Biol. Riken
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MANO Eriko
Department of Biochemistry, University of Shizuoka, School of Pharmaceutical Sciences, Core Research
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武 素功
Herbarium, Kunming Institute of Botany, Academia Sinica
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山口 貴大
自然科学研究機構・基礎生物学研究所
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堀口 吾朗
自然科学研究機構・基礎生物学研究所
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石川 直子
基礎生物学研究所
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高部 恵理子
基礎生物学研究所
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大葉 秀章
Department of Botany, University Museum
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池田 博
Faculty of Informatics, Okayama University of Science
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宮本 太
Faculty of Agriculture, Tokyo University of Agriculture
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上田 貴志
東大・分生研
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松田 憲之
東大大学院・生物科学
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中野 明彦
東大大学院・生物科学
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庄田 恵子
東京大・分子細胞生物学研究所
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KIM Gyung-tae
東京大・分子細胞生物学研究所
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柘植 知彦
東京大学・分子細胞生物学研究所
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大葉 秀章
Department Of Botany University Museum
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秋山 忍
Department Of Botany National Science Museum
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KUROIWA Tsuneyoshi
Department of Biological Sciences, Graduate School of Science, University of Tokyo
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KUROIWA Haruko
Kyoritsu Woman's Junior College
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Tomizawa Yasuko
東京女子医科大学附属日本心臓血圧研究所
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Tomizawa Yasuko
Department Of Cardiovascular Surgery The Heart Institute Of Japan Tokyo Women's Medical Univers
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FUKUDA Tatsuya
Graduate School of Life Sciences, Tohoku University
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YOKOYAMA Jun
Graduate School of Life Sciences, Tohoku University
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Demura Taku
Graduate School Of Biological Sciences Nara Inst. Of Sci. And Technol.
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Anai T
Laboratory Of Plant Genetics And Breeding Faculty Of Agriculture Saga University
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Anai Toyoaki
Laboratory Of Plant Breeding Faculty Of Agriculture Saga University
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Anai Toyoaki
Institute Of Applied Biochemistry University Of Tsukuba
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Anai Toyoaki
Inst. Appl. Biochem. Univ. Of Tsukuba
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Fukuda Hiroo
Department Of Biological Sciences Graduate School Of Science The University Of Tokyo
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Kim Gyung-tae
National Institute For Basic Biology / Center Fof Integrative Bioscience
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Kim Gyung-tae
Inst. Mol. Cell. Biosci. Univ. Of Tokyo
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Murata Satoshi
Department Of Computational Intelligence And Systems Science Interdisciplinary Graduate School Of Sc
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Kuroiwa Haruko
Kyoritsu Women's Junior College
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Ueno Yoshihisa
Division Of Applied Biosciences Graduate School Of Agriculture Kyoto University
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Nanjyo Tokihiko
Laboratory Of Plant Molecular Biology Tsukuba Life Science Center The Institute Of Physical And Chem
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上田 貴志
理研・生体膜
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中野 明彦
東京大学理学系研究科
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Sakaiya Mao
Laboratory Of Plant Cell Technology And Coe Program In The 21st Century Graduate School Of Nutrition
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SANADA Yukika
Fac. Sci., Kanazawa Univ.
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NANJO Tokihiko
Plant Mol. Biol. RIKEN
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YOSHIBA Yoshu
Advanced Research Laboratory Hitachi Ltd.
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KAKUBARI Yoshitaka
Fac. Agr., Shizuoka Univ.
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YAMAGUCHI-SHINOZAKI Kazuko
Div. Biol. Res. JIRCAS, Min. Agr. Forest. Fish
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SHINOZAKI Kazuo
Plant Mol. Biol. RIKEN
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Fukuda Tatsuya
Department Of Ecology And Evolutionary Biology Graduate School Of Life Science Tohoku University
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Yamaguchi Takahiro
Department Of Animal Biology Graduate School Of Agricultural Science Tohoku University
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NITASAKA Eiji
Department of Biological Science, Graduate School of Science, Kyusyu University
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Hasebe Mitsuyasu
National Institute for Basic Biology, Myoudalji.Okazaki
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Takahashi Hiro
Plant Biology Research Center, Chubu University
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Nakao Sachiko
College of Bioscience and Biotechnology, Chubu University
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Ojio Takahiro
College of Bioscience and Biotechnology, Chubu University
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Morishita Ryo
College of Bioscience and Biotechnology, Chubu University
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Morikawa Satomi
College of Bioscience and Biotechnology, Chubu University
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Machida Chiyoko
Plant Biology Research Center, Chubu University
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Kobayashi Takeshi
Plant Biology Research Center, Chubu University
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YOKOTA Masatsugu
Laboratory of Ecology and Systematics, Faculty of Science, University of the Ryukyus
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TANAKA Hirokazu
College of Bioscience and Biotechnology, Chubu University and CREST, Japan Science and Technology Ag
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GOTO Shingo
Laboratory of Plant Cell Technology and COE Program in the 21st Century, Graduate School of Nutritio
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NAKANO Tatsuo
Laboratory of Plant Cell Technology and COE Program in the 21st Century, Graduate School of Nutritio
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HIRANO Takanori
Laboratory of Plant Cell Technology and COE Program in the 21st Century, Graduate School of Nutritio
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KOMEDA Yoshibumi
Department of Biological Sciences, Graduate School of Science, The University of Tokyo
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KOBAYASHI Hirokazu
Laboratory of Plant Cell Technology and COE Program in the 21st Century, Graduate School of Nutritio
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KOZUKA Toshiaki
Department of Biosystems Science, School of Advanced Science, The Graduate University for Advanced S
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KIM Gyung-Tae
Faculty of Natural Resources and Life Sciences, Dong-A University
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OHGISHI Maki
Laboratory for Genetic Regulatory Systems, Genomic Function Research Group, RIKEN Plant Science Cent
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SAKAI Tatsuya
Laboratory for Genetic Regulatory Systems, Genomic Function Research Group, RIKEN Plant Science Cent
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STOYNOVA-BAKALOVA Ekaterina
Acad. M. Popov Institute of Plant Physiology, Bulgarian Academy of Sciences
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PETROV Peter
Acad. M. Popov Institute of Plant Physiology, Bulgarian Academy of Sciences
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FUJIKAWA Kazumi
University Museum, University of Tokyo
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WU Su-Gong
Kunming Institute of Botany, Chinese Academy of Sciences
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IWAKAWA Hidekazu
Division of Biological Science, Graduate School of Science, Nagoya University
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SEMIARTI Endang
Division of Biological Science, Graduate School of Science, Nagoya University
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ONOUCHI Hitoshi
Division of Biological Science, Graduate School of Science, Nagoya University
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KOJIMA Shoko
College of Bioscience and Biotechnology, Chubu University and CREST, Japan Science and Technology Co
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SOMA Teppei
Division of Biological Science, Graduate School of Science, Nagoya University
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IKEZAKI Masaya
Division of Biological Science, Graduate School of Science, Nagoya University
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TANAKA Hirokazu
Divison of Biological Science, Graduate School of Science, Nagoya University
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MACHIDA Chiyoko
Divison of Biological Science, Graduate School of Science, Nagoya University
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Semiarti OEndang
Div. Biol. Sci., Grad. Sch. Sci., Nagoya Univ.
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Tsukaya Hirokazu
NIBB, PRESTO, JST.
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TSUKAYA Hirokazu
Natl. Inst. Basic Biology
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NAGAI Shunji
National Cancer Center Hospital East, Oncology/Hematology
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Ishikawa Naoko
Department Of Agricultural Chemistry Faculty Of Horticulture Chiba University
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IWATSUKI Kunio
Botanical Gardens, Faculty of Science, University of Tokyo
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Komeda Yoshibumi
Department Of Biological Sciences Graduate School Of Science The University Of Tokyo
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Wu S‐g
Kunming Inst. Biology Chinese Acad. Sci. Yunnan Chn
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Hasebe Mitsuyasu
National Institute For Basic Biology
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Onouchi Hitoshi
Division Of Applied Bioscience Graduate School Of Agriculture Hokkaido University
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Petrov Peter
Acad. M. Popov Institute Of Plant Physiology Bulgarian Academy Of Sciences
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Ikezaki Masaya
Division Of Biological Science Graduate School Of Science Nagoya University
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Fujikawa Kazumi
University Museum University Of Tokyo
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Goto Shingo
Laboratory Of Plant Cell Technology And Coe Program In The 21st Century Graduate School Of Nutrition
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Soma Teppei
Division Of Biological Science Graduate School Of Science Nagoya University
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Hirano Takanori
Laboratory Of Plant Cell Technology And Coe Program In The 21st Century Graduate School Of Nutrition
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今市 涼子
日本女子大・理
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Fujioka Kouki
International Clinical Research Center Research Institute International Medical Center Of Japan
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Mano Eriko
Department Of Biochemistry University Of Shizuoka School Of Pharmaceutical Sciences Core Research Fo
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Mano Eriko
Department Of Biosystems Science School Of Advanced Sciences The Graduate University For Advanced St
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Tsukaya Hirokazu
National Institute For Basic Biology Okazaki Institute For Integrated Bioscience:the Graduate Univer
著作論文
- 双子葉植物の葉の形態形成 : モデル植物, アラビドプシスを用いた遺伝学的アプローチ
- 日本産ヘクソカズラにおける葉型の多様性 : 宮島産コバノヘクソカズラの再検討
- Ara4 GTPase AND ITS INTERACTANTS
- ANALYSES OF ARA FAMILY, THE SMALL GTPase FROM Arabidopsis thaliana
- 葉の形態形成と植物ホルモン
- オオバコ矮小化に関する形態学的・分子系統学的解析、特にヤクシマオオバコの分類学的扱いについて
- FTAカードを用いたフィールドでの植物DNA採集法
- ジャワ島及びボルネオ島産ツリフネソウ属植物(ツリフネソウ科)の細胞分類学的研究
- 葉の形態形成 (発生システムのダイナミクス) -- (組織・器官形成)
- 雲南省西北部及びチベット東・中部で1999年から2001年にかけて採集されたベンケイソウ科・キク科・イグサ科・ホシクサ科・ラン科植物集覧
- 葉の形とサイズは環境に応じて変化する--葉形の可塑性と進化 (特集 発生学・生態学・進化学の融合)
- セーター植物と温室植物:そのかたちとはたらき (特集 高山植物研究の現在--アルプスからヒマラヤへ)
- Regulation of the biosynthesis of plant hormones by cytochrome P450s
- The Leaf Index : Heteroblasty, Natural Variation, and the Genetic Control of Polar Processes of Leaf Expansion
- 葉の形成--葉の長さ,幅,大きさを決める遺伝子制御 (植物の形づくり--遺伝子からみた分子メカニズム) -- (器官形成と分裂組織の役割)
- 植物の発生メカニズム 後生動物の発生とどれだけ違うのか (特集 発生進化の分子機構 動物と植物の共通性と多様性)
- アラビドプシスの葉細胞の極性伸長を司る遺伝子ROTUNDIFOLIA3の分子遺伝学的解析
- 生物の形の多様性と進化(4)葉の形の多様性とその遺伝子的背景
- Monophyllaea属の子葉における競合器官形成
- 低分子量GTPase Ara4と機能的に相互作用する因子の探索
- 子葉と本葉のアイデンティティー -アラビドプシスにおける遺伝的解析-
- シロイヌナズナをモデル植物とした葉形態形成の発生遺伝学的解析
- シロイヌナズナの変異体を用いた葉身の極性伸長制御機構に関する発生遺伝学的解析
- アラビドプシスにおける葉身非対称性変異体の解析
- ROLES OF PROLINE IN OSMOTIC STRESS TOLERANCE AND MORPHOGENESIS OF Arabidopsis
- 形態進化の実験的モデル植物・シロイヌナズナ (特集・植物の形の進化)
- Knowledge-based Fuzzy Adaptive Resonance Theory and Its Application to the Analysis of Gene Expression in Plants(BIOINFORMATICS)
- ホシザキシャクジョウ(ヒナノシャクジョウ科)の18S rDNA配列情報に基づく系統的位置
- Molecular evidences for allopolyploid origins of Plantago asiatica var. densiuscula and P. formosana
- Receptor-like kinases that are essential for protoderm formation in Arabidopsis thaliana
- Arabidopsis Mutants by Activation Tagging in which Photosynthesis Genes are Expressed in Dedifferentiated Calli
- Gravitropism in Leaves of Arabidopsis thaliana (L.) Heynh.
- The Different Growth Responses of the Arabidopsis thaliana Leaf Blade and the Petiole during Shade Avoidance are Regulated by Photoreceptors and Sugar
- Cell division and cell enlargement in isolated Cucurbita cotyledons grown in darkness and in light
- Thermal insulation and accumulation of heat in the downy inflorescences of Saussurea medusa (Asteraceae) at high elevation in Yunnan, China
- The ASYMMETRIC LEAVES2 Gene of Arabidopsis thaliana, Required for Formation of a Symmetric Flat Leaf Lamina, Encodes a Member of a Novel Family of Proteins Characterized by Cysteine Repeats and a Leucine Zipper
- ACR4, a Putative Receptor Kinase Gene of Arabidopsis thaliana, that is Expressed in the Outer Cell Layers of Embryos and Plants, is Involved in Proper Embryogenesis
- The ASYMMETRIC LEAVES2 gene of A. thaliana regulates the establishment of midvein as the longitudinal axis of leaf symmetry
- MOLECULAR-GENETIC ANALYSIS OF THE AS2 GENE ON THE MECHANISM OF SYMMETRICAL LEAF DEVEL OPMENT IN Arabidopsis thaliana
- Study on the Role of ATCR4,the Arabidopsis Homolog of Maize CRINKLY4 in Epidermis Differentiation
- The ALE1 gene is involved in endosperm development and epidermal differentiation in arabidopsis
- The role of the ASYMMETRIC LEAVES 2(AS2)gene of Arabidopsis thaliana in leaf development
- Characterization of a member of the AN subfamily, IAN, from Ipomoea nil
- Taxonomic Notes on Cayratia tenuifolia (Wight & Arn.) Gagnep., Vitaceae
- Intra-specific Polyploidy and Possible Occurrence of Some Genetic Types for Pollen Development in Cayratia japonica, Vitaceae.
- Didymoplexiella cinnabarina (Orchidaceae) : a New Species from Muller Range, Central Kalimantan, Indonesia
- Microarray analysis of compensated cell enlargement in angustifolia3
- THE LANCEOLATUSI AND THE MACROPHYLLA GENES INVOLVED IN THE LEAF DEVELOPMENT -AN ONTOGENIC ANALYSIS USING Arabidopsis thaliana.
- ISOLATIONS AND ANALYSES OF MORPHOLOGICAL MUTANTS OF COTYLEDONS IN Arabidopsis thaliana
- Genetic Control of Petiole Length in Arabidopsis thaliana
- Characterization of a dehydrogenase motif and an uORF in Arabidopsis ANGUSTIFOLIA gene
- 腐生植物Monotropastrum humile var. glaberrimumの菌根菌の分子マーカーによる同定
- A novel feature of structural variegation in leaves of the tropical plant Schismatoglottis calyptrata
- Brassinosteroids Control the Proliferation of Leaf Cells of Arabidopsis thaliana
- Optical and anatomical characteristics of bracts from the Chinese "glasshouse" plant, Rheum alexandrae Batalin (Polygonaceae), in Yunnan, China
- The Role of Meristematic Activities in the Formation of Leaf Blades
- Molecular variation of Spiranthes sinensis (Orchidaceae) in Japan, with special reference to systematic treatment of seasonally differentiated groups and a dwarf form, f. gracilis, from Yakushima Island
- Leaf anatomy of a rheophyte, Dendranthema yoshinaganthum (Asteraceae), and of hybrids between D. yoshinaganthum and a closely related non-rheophyte, D. indicum
- Molecular genetic studies of the leaf abaxial-adaxial determination in rice
- Morphological, Physiological and Molecular Genetic Characterization of Arabidopsis himalaica, with Reference to A. thaliana
- Compensated cell enlargement occurs post-mitotically and is achieved by several different mechanisms
- Classification of compensated cell enlargement by the extra-small sisters mutations
- Dissection of Enhanced Cell Expansion Processes in Leaves Triggered by a Defect in Cell Proliferation, with Reference to Roles of Endoreduplication
- Coordination of cell proliferation and cell expansion in the control of leaf size in Arabidopsis thaliana
- Morphological and molecular variation in Mitchella undulata, with special reference to the systematic treatment of the dwarf from Yakushima
- GENETIC DISSECTION OF THE ELONGATION PROCESSES IN LEAF DEVELOPMENT-A REGULATION THROUGH CORTICAL MICROTUBULES ORIENTATION-
- Evolutionary and developmental studies of unifacial leaves in monocots : Juncus as a model system
- Analyses of transgenic or mutant plants with altered leaf thickness
- ギンリョウソウ(Monotropastrum humile)の分類的位置の再検討--glaberrimum変種に注目して
- Chromosome Observations in Species of Cayratia (Vitaceae). II. Intraspecific Polyploidy in C. trifolia
- ネパール・ムスタンにおける野生植物種の大規模DNAコレクション
- The Mechanism of Cell Cycle Arrest Front Progression Explained by a KLUH/CYP78A5-dependent Mobile Growth Factor in Developing Leaves of Arabidopsis thaliana
- The bHLH Transcription Factor SPATULA Controls Final Leaf Size in Arabidopsis thaliana
- Chromosome observations in Cayratia, Vitaceae
- Chemical Identity of a Rotting Animal-Like Odor Emitted from the Inflorescence of the Titan Arum (Amorphophallus titanum)
- Thismia mullerensis (Burmanniaceae), a New Species from Muller Range, Central Kalimantan
- Mutual interactions among the genesresponsible for leaf development -- an ontogenetic analysis usingArabidopsis thaliana
- アラビドプシスを用いた葉形態形成の発生遺伝学的解析
- シュ-ト形態形成の遺伝学的背景 (エボル-ション) -- (発生)
- ASYMMETRIC LEAVES2 and Elongator, a Histone Acetyltransferase Complex, Mediate the Establishment of Polarity in Leaves of Arabidopsis thaliana
- ANGUSTIFOLIA3 Plays Roles in Adaxial/Abaxial Patterning and Growth in Leaf Morphogenesis
- ROTUNDIFOLIA4 Regulates Cell Proliferation Along the Body Axis in Arabidopsis Shoot
- A hypothesis on the origin of genetic heterozygosity in diploids and triploids in Japanese Cayratia japonica species complex (Vitaceae)
- Leaf adaxial-abaxial polarity specification and lamina outgrowth : evolution and development
- Flowering phenology of the nine-year plant, Strobilanthes cernua (Acanthaceae)
- A hypothesis on the origin of genetic heterozygosity in diploids and triploids in Japanese Cayratia japonica species complex (Vitaceae)
- How do 'housekeeping' genes control organogenesis? : unexpected new findings on the role of housekeeping genes in cell and organ differentiation
- Leaf adaxial-abaxial polarity specification and lamina outgrowth : evolution and development