Takemoto Daigo | Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
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概要
- TAKEMOTO Daigoの詳細を見る
- 同名の論文著者
- Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya Universityの論文著者
関連著者
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Takemoto Daigo
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University:plant Cell
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Kawakita Kazuhito
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
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Kawakita Kazuhito
Plant Path. Lab. School Agric. Sci.nagoya Univ.
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Takemoto Daigo
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
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Doke Noriyuki
Plant Pathology Laboratory, Graduate School of Bioagricultural Sciences, Nagoya University
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Takemoto Daigo
Plant Pathology Laboratory, Graudate School of Bioagricultural Sciences, Nagoya University
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Kawakita Kazuhito
Plant Pathology Laboratory, Graudate School of Bioagricultural Sciences, Nagoya University
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Doke Noriyuki
Plant Pathol. Lab. Grad. School Bioagr. Sci. Nagoya Univ.
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Doke Noriyuki
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
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Kawakita Kazuhito
Graduate School Of Bioagricultural Sciences Nagoya University
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Nishimura M
Dept. Cell Biol. Nat. Inst. Basic Biol.
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Hayashi M
Nihs
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NISHIMURA Mikio
Department of Cell Biology, National Institute for Basic Biology
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HAYASHI Makoto
Department of Basic Medical Research and Education, Ehime University Graduate School of Medicine
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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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HAYASHI Makoto
Dept. of Appli. Plant Sci., Graduate School of Agric Sci., Tohoku Univ.
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Furuse Katsumi
Plant Pathology Laboratory, School of Agricultural Sciences, Nagoya University
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Furuse Katsumi
Plant Pathology Laboratory School Of Agricultural Sciences Nagoya University
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Hayashi Makoto
Depart. Of Bioteclnology Graduate School Of Eng. Osaka Univ.
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Hayashi Makoto
Dept. Biol. Sci Grad Sch Sci Univ Tokyo
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Nishimura Mikio
Dept. Cell Biol. Nat. Inst Basic Biol.
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IDO Kunihiko
Plant Pathol. Lab., Grad. School Bioagr. Sci. Nagoya Univ.
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YOSHIOKA Hirohumi
Plant Pathol. Lab., Grad. School Bioagr. Sci. Nagoya Univ.
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NAGANO Mutsumi
Plant Pathol. Lab., Grad. School Bioagr. Sci., Nagoya Univ.
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FURUSE Katsumi
Kumiai Chemical Industry Co. , Kikugawa
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Ido Kunihiko
Plant Pathol. Lab. Grad. School Bioagr. Sci. Nagoya Univ.
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Nagano Mutsumi
Plant Pathol. Lab. Grad. School Bioagr. Sci. Nagoya Univ.
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Yoshioka Hirohumi
Plant Pathol. Lab. Grad. School Bioagr. Sci. Nagoya Univ.
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URUMA Sadao
Plant Pathology Laboratory, Graduate School of Bioagricultural Sciences, Nagoya University
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SHIBATA Yusuke
Plant Pathology Laboratory, Graduate School of Bioagricultural Sciences, Nagoya University
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Uruma Sadao
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
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Shibata Yusuke
Plant Pathology Laboratory Graduate School Of Bioagricultural Sciences Nagoya University
著作論文
- Isolation of the Gene for EILP, an Elicitor-Inducible LRR Receptor-Like Protein, from Tobacco by Differential Display
- Molecular Cloning of a Defense-Response-Related Cytochrome P450 Gene from Tobacco
- CLONING AND CHARACTERIZATION OF CELL WALL ELICITOR-INDUCED GENES OF TOBACCO
- MOLECULAR CLONING OF CELL WALL ELICITOR-INDUCED GENES OF TOBACCO BY DIFFERENTIAL DISPLAY
- Characterization of Elicitor-inducible Tobacco Genes Isolated by Differential Hybridization
- ISOLATION OF ELICITOR-RESPONSIVE GENES IN POTATO BY SUBTRACTION METHOD
- THE EXPRESSION OF 1-AMINOCYCLOPROPANE-1-CARBOXYLIC ACID SYNTHASE GENES IN POTATO LEAVES INFECTED WITH Phytophthora infestans OR TREATED WITH ELICITORS
- Identification of Chitinase and Osmotin-Like Protein as Actin-Binding Proteins in Suspension-Cultured Potato Cells
- INVOLVEMENT OF ACTIN AND ACTIN-RELATED PROTEIN(S)IN ELICITATION OF DEFENCE RESPONSE IN POTATO PLANT
- N,N-dimethylsphingosine, an inhibitor of sphingosine kinase, induces phytoalexin production and hypersensitive cell death of Solanaceae plants without generation of reactive oxygen species