Rchr
J-GLOBAL ID:200901058422915210   Update date: Oct. 23, 2024

Iwase Akira

イワセ アキラ | Iwase Akira
Affiliation and department:
Homepage URL  (2): http://cellfunction.riken.jp/index.htmlhttp://labs.psc.riken.jp/cfru/index.html
Research field  (3): Applied biochemistry ,  Molecular biology ,  Plants: molecular biology and physiology
Research keywords  (8): regeneration ,  redifferentiation ,  totipotency ,  有用物質生産 ,  二次代謝 ,  転写因子 ,  脱分化 ,  植物細胞
Research theme for competitive and other funds  (15):
  • 2022 - 2025 Functional analysis of factors controlling plastid phase conversion
  • 2020 - 2024 Deciphering plant cell totipotency from functions of small molecule compounds
  • 2020 - 2023 Molecular mechanisms on somatic embryogenesis
  • 2020 - 2022 Stem cell reformation in wound-induced callus
  • 2018 - 2020 「非生物ストレスによる維管束幹細胞新生の分子メカニズム」
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Papers (43):
  • Junshi Yazaki, Takashi Yamanashi, Shino Nemoto, Atsuo Kobayashi, Yong-Woon Han, Tomoko Hasegawa, Akira Iwase, Masaki Ishikawa, Ryo Konno, Koshi Imami, et al. Mapping adipocyte interactome networks by HaloTag-enrichment-mass spectrometry. Biology methods & protocols. 2024. 9. 1. bpae039
  • Mikiko Kojima, Nobue Makita, Kazuki Miyata, Mika Yoshino, Akira Iwase, Miwa Ohashi, Alicia Surjana, Toru Kudo, Noriko Takeda-Kamiya, Kiminori Toyooka, et al. A cell wall-localized cytokinin/purine riboside nucleosidase is involved in apoplastic cytokinin metabolism in Oryza sativa. Proceedings of the National Academy of Sciences. 2023. 120. 36
  • 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
  • Hatsune Morinaka, Duncan Coleman, Keiko Sugimoto, Akira Iwase. Molecular Mechanisms of Plant Regeneration from Differentiated Cells: Approaches from Historical Tissue Culture Systems. Plant and Cell Physiology. 2023
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MISC (9):
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Patents (5):
  • Transgenic plant having an enhanced ability of dedifferentiation and redifferentiation or a portion thereof
  • Method of plant dedifferentiation, callus formation by this method and utilization thereof.
  • Method for producing dedifferentiated plant cells and dedifferentiation inducers for plant cells
  • (United States Patent. )Plant having reduced lignin and cellulose contents without reducing glucan content, method of producing the same and utilization thereof.
  • Plant having reduced lignin and cellulose contents without reducing glucan content, method of producing the same and utilization thereof.
Books (5):
  • 大人のための生物学の教科書 最新の知識を本質的に理解する (ブルーバックス)
    講談社 2023 ISBN:4065333652
  • Technologies for propagation and production of plants -The application of cell culture and grafting-
    Hokuryukan 2018
  • 広辞苑を3倍楽しむ その2
    岩波書店 2018
  • 植物学の百科事典
    丸善 2016
  • 広辞苑を3倍楽しむ「もこもこ」
    岩波書店「科学」 2014
Lectures and oral presentations  (118):
  • Deciphering and utilizing plant regeneration ability
    (Seminar at Forest Bio-Research Center (Hosted by Dr. Yoshihiko Nanasato) 2024)
  • Deciphering plant regeneration ability
    (Seminar at Munetaka Sugiyama Lab (University of Tokyo) 2024)
  • Isolation of factors controlling plastid phase conversion
    (2024)
  • Deciphering plant cell totipotency by small molecules
    (The 65th Annual Meeting of the Japanese Society of Plant Physiologists 2024)
  • How the WIND1 transcription factor regulates cell fate conversion in plant regeneration
    (The 9th Cell Aggregation Meeting 2023)
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Education (3):
  • 2000 - 2005 University of Tsukuba Graduate School of Life and Environmental Sciences
  • 1996 - 2000 University of Tsukuba
  • 1992 - 1995 千葉県立東葛飾高等学校 普通科
Work history (8):
  • 2021/04 - 現在 RIKEN Senior Research Scientist
  • 2020/12 - 現在 Japan Science and Technology Agency JST Strategic Basic Research Programs PRESTO researcher (concurrent)
  • 2012/04 - 2021/03 RIKEN Researcher
  • 2016/10 - 2017/07 Institut de Biologie de l'ENS (IBENS) Visiting Scholar
  • 2012/12 - 2013/03 Ohio State University Visiting Scholar
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Committee career (9):
  • 2024/09 - 現在 Japanese Society for Plant Biotechnology Public Relations
  • 2023/04 - 現在 The Botanical Society of Japan Public Relations
  • 2022/09 - 2024/08 Japanese Society for Plant Biotechnology Director
  • 2022/09 - 2024/08 Japanese Society for Plant Biotechnology Director of Public Relations
  • 2020/04 - 2023/03 Botanical Society of Japan Diversity Promotion Comittee
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Awards (11):
  • 2017/12 - Federation of American Societies for Experimental Biology (FASEB) Travel Award for FASEB Mechanisms in Plant Developments Conference
  • 2016/12 - Cold Spring Harbor Asia Fellowship Award
  • 2016/04 - RIKEN CSRS CSRS Incentive Award Epigenetic control of cellular plasticity in plants
  • 2014/10 - Best Poster Award in The 38th Naito Conference on Molecule-based biological systems
  • 2012/03 - RIKEN RIKEN PSC Director's Award
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Association Membership(s) (4):
The Japanese Society for Epigenetics ,  Japanese Society for Plant Biotechnology ,  The Botanical Society of Japan ,  The Japanese Society of Plant Physiologist
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