Rchr
J-GLOBAL ID:201801000191986235   Update date: Sep. 26, 2024

Motose Hiroyasu

Motose Hiroyasu
Affiliation and department:
Research field  (1): Cell biology
Research theme for competitive and other funds  (11):
  • 2021 - 2023 植物の姿勢を最適化する張力応答のライブイメージングと分子機構の解析
  • 2019 - 2022 コケ植物の仮根細胞における先端成長の分子機構とその進化的意義の解明
  • 2016 - 2020 Regulatory mechanism of growth polarity of plant cells by NIMA-related kinases
  • 2013 - 2016 Analysis of cell-cell interaction involved in vascular differentiation
  • 2013 - 2015 NIMA関連キナーゼによる形態形成と環境応答の協調機構の解析
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Papers (45):
  • Takuya Furumoto, Shohei Yamaoka, Takayuki Kohchi, Hiroyasu Motose, Taku Takahashi. Thermospermine Is an Evolutionarily Ancestral Phytohormone Required for Organ Development and Stress Responses in Marchantia Polymorpha. Plant & cell physiology. 2024. 65. 3. 460-471
  • Takashi Okamoto, Hiroyasu Motose, Taku Takahashi. Microtubule-associated proteins WDL5 and WDL6 play a critical role in pollen tube growth in <i>Arabidopsis thaliana</i>. Plant Signaling & Behavior. 2023. 18. 1
  • Hikari Mase, Yoshihiro Yoshitake, Takayuki Kohchi, Taku Takahashi, Hiroyasu Motose. Overexpression of NIMA-related kinase suppresses cell proliferation and tip growth in a liverwortMarchantia polymorpha. bioRxiv. 2023
  • Hirotoshi Matsuo, Hiroko Fukushima, Shinpei Kurokawa, Eri Kawano, Takashi Okamoto, Hiroyasu Motose, Taku Takahashi. Loss of function of an Arabidopsis homologue of JMJD6 suppresses the dwarf phenotype of acl5, a mutant defective in thermospermine biosynthesis. FEBS letters. 2022. 596. 23. 3005-3014
  • Takahiro Tanaka, Daiki Koyama, Mitsuru Saraumi, Hiroyasu Motose, Taku Takahashi. RNA processing/modifying enzymes play key roles in the response to thermospermine in Arabidopsis thaliana. bioRxiv. 2022
more...
MISC (36):
Lectures and oral presentations  (87):
  • ゼニゴケ生殖枝の形態形成におけるNIMA関連キナーゼの機能
    (日本植物生理学会 第62回年会)
  • ゼニゴケNIMA関連キナーゼの発現誘導系を用いた機能解析
    (日本植物生理学会 第62回年会)
  • ゼニゴケのアルマジロリピートキネシンは微小管とオルガネラ輸送を介して仮根伸長を制御する
    (日本植物生理学会 第62回年会)
  • ゼニゴケ生殖器におけるNIMA関連キナーゼの機能
    (植物細胞骨格研究会 - Plant Cytoskeleton 2020)
  • 発現誘導系を用いたゼニゴケNIMA関連キナーゼの機能解析
    (植物細胞骨格研究会 - Plant Cytoskeleton 2020)
more...
Professional career (1):
  • 博士(理学) (東京大学大学院理学系研究科生物科学専攻)
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