Papers - TAKEMOTO, Daigo
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Mizuno, Y; Imano, S; Camagna, M; Suzuki, T; Tanaka, A; Sato, I; Chiba, S; Kawakita, K; Takemoto, D
JOURNAL OF GENERAL PLANT PATHOLOGY Vol. 85 ( 5 ) page: 347 - 355 2019.9
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Mizuno Yuri, Ohtsu Mina, Shibata Yusuke, Tanaka Aiko, Camagna Maurizio, Ojika Makoto, Mori Hitoshi, Sato Ikuo, Chiba Sotaro, Kawakita Kazuhito, Takemoto Daigo
FRONTIERS IN PLANT SCIENCE Vol. 10 page: 222 2019.3
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Takemoto Daigo, Shibata Yusuke, Ojika Makoto, Mizuno Yuri, Imano Sayaka, Ohtsu Mina, Sato Ikuo, Chiba Sotaro, Kawakita Kazuhito, Rin Soriya, Camagna Maurizio
JOURNAL OF GENERAL PLANT PATHOLOGY Vol. 84 ( 5 ) page: 312 - 320 2018.9
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Measuring Secretion of Capsidiol in Leaf Tissues of Nicotiana benthamiana
Kuroyanagi Teruhiko, Camagna Maurizio, Takemoto Daigo
BIO-PROTOCOL Vol. 8 ( 15 ) page: e2954 2018.8
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Hypersensitive Response in Plants Invited Reviewed
Maurizio Camagna, Daigo Takemoto
Encyclopedia of Life Sciences page: 1-7 2018.1
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Yuka Kayano, Aiko Tanaka, Daigo Takemoto
PLoS Pathogens Vol. 14 ( 1 ) page: e1006840 2018.1
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Green Kimberly A., Becker Yvonne, Tanaka Aiko, Takemoto Daigo, Fitzsimons Helen L., Seiler Stephan, Lalucque Herve, Silar Philippe, Scott Barry
MOLECULAR MICROBIOLOGY Vol. 103 ( 4 ) page: 657 - 677 2017.2
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EIN2-mediated signaling is involved in pre-invasion defense in Nicotiana benthamiana against potato late blight pathogen, Phytophthora infestans Reviewed Open Access
Soriya Rin, Yuri Mizuno, Yusuke Shibata, Mayuka Fushimi, Shinpei Katou, Ikuo Sato, Sotaro Chiba, Kazuhito Kawakita, Daigo Takemoto
Plant Signaling and Behavior Vol. 12 ( 4 ) page: e1300733 2017
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Methanol extract of mycelia from Phytophthora infestans-induced resistance in potato. Reviewed
Monjil M.S., Nozawa T., Shibata Y., Takemoto D., Ojika M. and Kawakita K.
C. R. Biol. Vol. 338 ( 5 ) page: 185-196 2015.3
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VibA, a homologue of a transcription factor for fungal heterokaryon incompatibility, is involved in the antifungal compound production in the plant symbiotic fungus Epichloë festucae. Reviewed
Niones J.T. and Takemoto D.
Eukaryot. Cell Vol. 14 ( 1 ) page: 13-24 2015.1
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Nucleoporin 75 is involved in the ethylene-mediated production of phytoalexin for the resistance of Nicotiana benthamiana to Phytophthora infestans. Reviewed
Ohtsu M., Shibata Y., Ojika M., Tamura K., Hara-Nishimura I., Mori H., Kawakita K. and Takemoto D.
Mol. Plant-Microbe Interact. Vol. 27 ( 12 ) page: 1318-1330 2014.12
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Phytophthora infestans : ジャガイモ疫病菌研究ー過去と現在の概観 Invited Reviewed
秋野聖之、竹本大吾、保坂和良
日本植物病理学会報 Vol. 80 page: 8-15 2014.11
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The water extract of Saragassum fusiforme is a potential elicitor of induced resistance in Solanum lycopersicum but not in Nicotiana benthamiana. Reviewed
Sbaihat L, Takemoto D. and Kawakita K.
International Journal of Biosciences and Biotechnology Vol. 2 ( 1 ) page: 11-19 2014.9
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Phytophthora infestans: a review of past and current studies on potato late blight. Invited Reviewed
Akino S., Takemoto D. and Hosaka K.
J. Gen. Plant Pathol. Vol. 80 page: 24-37 2014
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An isolate of Epichloe festucae, an endophytic fungus of temperate grasses, has growth inhibitory activity against selected grass pathogens Reviewed
Niones J.T., Takemoto D.
J. Gen. Plant Pathol. Vol. in press 2014
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Proteomic analysis of S-nitrosylated proteins in potato plant.
Kato H., Takemoto D. and Kawakita K.
Physiol. Plant. Vol. 148 page: 371-386 2013
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Bis-aryl methanone compound is a candidate of nitric oxide producing elicitor and induces resistance in Nicotiana benthamiana against Phytophthora infestans. Reviewed
Monjil M.S., Shibata Y., Takemoto D. and Kawakita K.
Nitric Oxide Vol. 29: page: 34-45 2013
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Nicotiana benthamiana Calreticulin 3a is required for the ethylene-mediated production of phytoalexins and disease resistance against oomycete pathogen Phytophthora infestans. Reviewed
Matsukawa M., Shibata Y., Ohtsu M., Mizutani A., Mori H., Wang P., Ojika M., Kawakita K. and Takemoto D.
Mol. Plant-Microbe Interact. Vol. 26 page: 880-892 2013
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Differential roles of NADPH oxidases and associated regulators in polarized growth, conidiation and hyphal fusion in the symbiotic fungus Epichloë festucae. Reviewed
Kayano Y., Tanaka A., Akano F., Scott B. and Takemoto D.
Fungal Genet. Biol. Vol. 56 page: 87-97 2013
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ProA, a transcriptional regulator of fungal fruiting body development, regulates leaf hyphal network development in the Epichloë festucae-Lolium perenne symbiosis.
Tanaka A., Cartwright G.M., Saikia S., Kayano Y., Takemoto D., Kato M., Tsuge T. and Scott B.
Mol Microbiol. Vol. 90 page: 551-568 2013