上口(田中) 美弥子 Ueguchi-Tanaka Miyako

ID:9000391918023

名大・生物機能開発利用研究センター Biosci. and Biotech. Cent., Nagoya Univ. (2010年 CiNii収録論文より)

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Articles:  1-8 of 8

  • Molecular Interaction of GA Signaling Components, GID1, SLR1, and GID2

    Ueguchi-Tanaka Miyako , Hirano Ko , Shimada Asako , Matsuoka Makoto

    By genetical and biochemical analyses using rice mutants, we have elucidated the nature of GA signaling during the past decade. Now, GA perception has been considered as follows; the binding of GA to …

    Plant and Cell Physiology Supplement 2010(0), S0057-S0057, 2010

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  • Evolution of the GAMYB-dependent gene expression system in plants

    Aya Koichiro , Ueguchi-Tanaka Miyako , Hirano Ko , Matsuoka Makoto

    GAMYB was firstly identified as a transcriptional regulator of gibberellin (GA)-responsive genes in barley aleurone. Previously, we revealed that OsGAMYB-dependent <I>CYP703A3</I> expressi …

    Plant and Cell Physiology Supplement 2009(0), 0704-0704, 2009

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  • Gibberellin Regulates Pollen Viability and Pollen Tube Growth in Rice

    Aya Koichiro , Ueguchi-Tanaka Miyako , Chhun Tory , Asano Kenji , Yamamoto Eiji , Watanabe Masao , Kitano Hidemi , Ashikari Motoyuki , Matsuoka Makoto

    Gibberellins (GAs) have many biological roles in higher plants. We performed genetic analysis on rice GA-related mutants, including GA-deficient and -insensitive mutants. The analysis revealed that ri …

    Plant and Cell Physiology Supplement 2008(0), 0350-0350, 2008

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  • The Function Of MYB Type Transcriptional Factor, GAMYB, In Anther Development

    Aya Koichiro , Ueguchi-Tanaka Miyako , Tsuji Hiroyuki , Kondo Maki , Nishimura Mikio , Ashikari Motoyuki , Matsuoka Makoto

    GAMYB was identified as a positive transcriptional regulator of gibberellin (GA)-responsive genes in barley aleurone. Recently, we showed that the rice GAMYB, OsGAMYB, is also essential for the anther …

    Plant and Cell Physiology Supplement 2008(0), 0349-0349, 2008

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  • Evolution of GID1-dependent gibberellin signaling pathway in plants

    Hirano Ko , Ashikari Motoyuki , Kitano Hidemi , Matsuoka Makoto , Ueguchi-Tanaka Miyako , Nakajima Masatoshi , Asano Kenji , Sakakibara Hitoshi , Kojima Mikiko , Nishiyama Tomoaki , Tanahashi Takako , Hasebe Mitsuyasu

    Although some types of ferns and mosses produce endogenous gibberellins (GAs), it has been unknown whether they possess the GID1-dependent GA signal transduction pathway as seen in seed plants. We ana …

    Plant and Cell Physiology Supplement 2007(0), 173-173, 2007

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  • Characterization of <I>CYP90B1/DWARF4</I> homolog in rice

    Sakamoto Tomoaki , Matsuoka Makoto , Ohnishi Toshiyuki , Ueguchi-Tanaka Miyako , Fujioka Shozo , Takatsuto Suguru , Yoshida Shigeo , Mizutani Masaharu , Tanaka Hiroshi , Kitano Hidemi

    <I>CYP90B1/DWARF4</I> catalyzes C-22 hydroxylation, the rate-limiting step of brassinosteroid (BR) biosynthesis in <I>Arabidopsis</I>. We have previously reported a rice <I& …

    Plant and Cell Physiology Supplement 2005(0), 103-103, 2005

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  • An Overview of Gibberellin Metabolic Enzyme Genes in Rice

    Sakamoto Tomoaki , Abe Kiyomi , Miyao Akio , Hirochika Hirohiko , Kitano Hidemi , Ashikari Motoyuki , Matsuoka Makoto , Miura Koutarou , Itoh Hironori , Tatsumi Tomoko , Ueguchi-Tanaka Miyako , Ishiyama Kanako , Kobayashi Masatomo , Agrawal Ganesh K. , Takeda Shin

    To enhance our understanding of gibberellin (GA) metabolism in rice (Oryza sativa L.), we identified 29 candidate genes encoding the following GA metabolic enzymes: ent-copalyl diphosphate synthase (C …

    Plant and Cell Physiology Supplement 2004(0), 331-331, 2004

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  • Loss-of-function mutations of the rice <I>GAMYB</I> gene impair the α-amylase expression in aleurone and flower development.

    Inukai Yoshiaki , Ashikari Motoyuki , Matsuoka Makoto , Kaneko Miyuki , Ueguchi-Tanaka Miyako , Itoh Hironori , Izawa Takeshi , Kobayashi Yuhko , Hattori Tsukaho , Miyao Akio , Hirochika Hirohiko

    GAMYB was first isolated as a positive transcription regulator of gibberellin (GA)-dependent α-amylase expression in aleurone. However, the role of GAMYB outside of aleurone is not well understo …

    Plant and Cell Physiology Supplement 2004(0), 334-334, 2004

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