M
Masanori Tamaoki
Researcher at National Institute for Environmental Studies
Publications - 99
Citations - 4679
Masanori Tamaoki is an academic researcher from National Institute for Environmental Studies. The author has contributed to research in topics: Arabidopsis & Gene. The author has an hindex of 36, co-authored 98 publications receiving 4283 citations. Previous affiliations of Masanori Tamaoki include Aichi University & Nagoya University.
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Journal ArticleDOI
Ethylene Inhibits Abscisic Acid-Induced Stomatal Closure in Arabidopsis
Yoko Tanaka,Toshio Sano,Masanori Tamaoki,Nobuyoshi Nakajima,Noriaki Kondo,Seiichiro Hasezawa +5 more
TL;DR: Results indicate that ethylene delays stomatal closure by inhibiting the ABA signaling pathway and were observed in ABA-irrigated plants and the plants in drought condition.
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Complete genomic structure of the bloom-forming toxic cyanobacterium Microcystis aeruginosa NIES-843.
Takakazu Kaneko,Nobuyoshi Nakajima,Shinobu Okamoto,Iwane Suzuki,Yuuhiko Tanabe,Masanori Tamaoki,Yasukazu Nakamura,Fumie Kasai,Akiko Watanabe,Kumiko Kawashima,Yoshie Kishida,Akiko Ono,Yoshimi Shimizu,Chika Takahashi,Chiharu Minami,Tsunakazu Fujishiro,Mitsuyo Kohara,Midori Katoh,Naomi Nakazaki,Shinobu Nakayama,Manabu Yamada,Satoshi Tabata,Makoto Watanabe +22 more
TL;DR: In addition to known gene clusters related to the synthesis of microcystin and cyanopeptolin, novel gene clusters that may be involved in the synthesis and modification of toxic small polypeptides were identified.
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Spermidine Synthase Genes Are Essential for Survival of Arabidopsis
Akihiro Imai,Takashi Matsuyama,Takashi Matsuyama,Yoshie Hanzawa,Yoshie Hanzawa,Takashi Akiyama,Masanori Tamaoki,Hikaru Saji,Yumiko Shirano,Tomohiko Kato,Hiroaki Hayashi,Daisuke Shibata,Satoshi Tabata,Yoshibumi Komeda,Yoshibumi Komeda,Taku Takahashi +15 more
TL;DR: The first genetic evidence indicating a critical role of the spermidine synthase in plant embryo development is provided, as described in this paper.
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Cytokinin and auxin inhibit abscisic acid-induced stomatal closure by enhancing ethylene production in Arabidopsis
Yoko Tanaka,Toshio Sano,Masanori Tamaoki,Nobuyoshi Nakajima,Noriaki Kondo,Seiichiro Hasezawa +5 more
TL;DR: It is suggested that cytokinins and auxins inhibit ABA-induced stomatal closure through the modulation of ethylene biosynthesis, and that ethylene inhibits the A BA-induced reduction of osmotic pressure in the guard cells.
Journal ArticleDOI
Molecular Mechanisms of Selenium Tolerance and Hyperaccumulation in Stanleya pinnata
John L. Freeman,Masanori Tamaoki,Cecil Stushnoff,Colin F. Quinn,Jennifer J. Cappa,Jean Devonshire,Sirine C. Fakra,Matthew A. Marcus,Steve P. McGrath,Doug Van Hoewyk,Elizabeth A. H. Pilon-Smits +10 more
TL;DR: The molecular mechanisms responsible for selenium tolerance and hyperaccumulation were studied in the Se hyper-accumulator Stanleya pinnata (Brassicaceae) by comparing it with the related secondary Se accumulator S. albescens using a combination of physiological, structural, genomic, and biochemical approaches.