Rchr
J-GLOBAL ID:202001014686445086   Update date: Jun. 21, 2024

sugimoto keiko

スギモト ケイコ | sugimoto keiko
Affiliation and department:
Job title: チームリーダー
Other affiliations (1):
Research field  (3): Cell biology ,  Developmental biology ,  Plants: molecular biology and physiology
Research keywords  (5): cell reprogramming ,  cell differentiation ,  cell proliferation ,  plant regeneration ,  plant organ growth
Research theme for competitive and other funds  (21):
  • 2024 - 2029 植物の誘導リプログラミングに立脚した新規バイオエコノミー基盤の創出
  • 2024 - 2027 植物の器官再生を支える細胞リプロラミング制御機構の解明
  • 2023 - 2025 Epigenetic regulation of cell cycle in plant meristem development
  • 2020 - 2025 Molecular mechanism of wound-induced responses as a strategy of plant resilience
  • 2020 - 2025 Multi-layered regulatory system of plant resilience under fluctuating environment
Show all
Papers (96):
  • Yetkin Çaka Ince, Keiko Sugimoto. Illuminating the path to shoot meristem regeneration: Molecular insights into reprogramming cells into stem cells. Current opinion in plant biology. 2023. 76. 102452-102452
  • Minoru Ueda, Tetsuya Higashiyama, Keiko Sugimoto, Keiichi Mochida, Keiji Nakajima, Makoto Hayashi, Masanori Okamoto, Yuki Nakamura, Motoaki Seki. The 33rd International Conference on Arabidopsis Research (ICAR2023). Genes to cells : devoted to molecular & cellular mechanisms. 2023. 28. 12. 825-830
  • Yu Chen, Fu-Yu Hung, Keiko Sugimoto. Epigenomic reprogramming in plant regeneration: Locate before you modify. Current opinion in plant biology. 2023. 75. 102415-102415
  • Hatsune Morinaka, Yuki Sakamoto, Akira Iwase, Keiko Sugimoto. How do plants reprogramme the fate of differentiated cells?. Current Opinion in Plant Biology. 2023. 74. 102377-102377
  • Nao Ogura, Yohei Sasagawa, Tasuku Ito, Toshiaki Tameshige, Satomi Kawai, Masaki Sano, Yuki Doll, Akira Iwase, Ayako Kawamura, Takamasa Suzuki, et al. WUSCHEL-RELATED HOMEOBOX 13 suppresses de novo shoot regeneration via cell fate control of pluripotent callus. Science Advances. 2023. 9. 27
more...
MISC (5):
  • Akira Iwase, Momoko Ikeuchi, Keiko Sugimoto. Molecular mechanisms on exerting totipotency in plant regeneration. BSJ-Review. 2016. 7. 161-176
  • 石田喬志, 藤原すみれ, 三浦謙治, NICOLA Stacey, 吉村美香, KATJA Schneider, 安達澄子, 南澤一徳, 梅田正明, 杉本慶子. HPY2は核内倍加周期への移行とメリステム維持の制御に関わる新規SUMO E3 ligaseである. 日本植物生理学会年会要旨集. 2010. 51st. 242
  • 石田喬志, 藤原すみれ, SCHNEIDER Katja, STACEY Nicola J, 杉本慶子. 細胞増殖と核内倍加を制御する分子機構の解析. 日本植物学会大会研究発表記録. 2009. 73rd. 152
  • Hirokazu Tsukuya, Christian Breuer, Nicola Stacey, Ushio Fujikura, Gorou Horiguchi, Keiko Sugimoto. Is endoreduplication governed by topo IV essential for cell-size regulation?. PLANT AND CELL PHYSIOLOGY. 2007. 48. S54-S54
  • Akira Iwase, Momoko Ikeuchi, Keiko Sugimoto. Molecular mechanisms on callus formation: Accelerators and Brakes. BSJ-Review. 6. 2-22
Education (3):
  • 1995 - 1999 The Australian National University Research School of Biological Science
  • 1993 - 1995 Osaka University Graduate School of Science
  • 1989 - 1993 International Christian University
Professional career (1):
  • PhD (The Australian National University)
Work history (9):
  • 2023/10 - 現在 日本学術会議 会員
  • 2021/06 - 現在 EMBO Associate Member
  • 2016/04 - 現在 The University of Tokyo Graduate School of Science, Department of Biological Sciences
  • 2012/04 - 現在 RIKEN RIKEN Center for Sustainable Resource Science Team Leader
  • 2009/04 - 2016/03 Tohoku University Graduate School of Agricultural Science
Show all
Committee career (3):
  • 2024 - 現在 Green Tissue Engineering Scientific Advisory Board Member
  • 2024 - 現在 University of Lausanne Scientific Advisory Board Member
  • 2021 - 現在 Gregor Mendel Institute Scientific Advisory Board Member
Awards (4):
  • 2022/06 - 木原記念財団 木原記念財団学術賞 植物の器官形成を司る分子機構の解明
  • 2021/06 - European Molecular Biology Organization EMBO associate member
  • 2010/03 - 日本植物生理学会 日本植物生理学会奨励賞 植物の核内倍加とサイズ制御の発生遺伝学的解析
  • 2005/08 - Biotechnology and Biological Sciences Research Council BBSRC David Philips Fellowship
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page