Rchr
J-GLOBAL ID:201401029525038595   Update date: Apr. 05, 2024

Izawa Takeshi

イザワ タケシ | Izawa Takeshi
Affiliation and department:
Homepage URL  (1): http://park.itc.u-tokyo.ac.jp/pbg/yu_zhong_yanHP/TOP.html
Research field  (1): Plants: molecular biology and physiology
Research keywords  (30): イネ ,  短日植物 ,  概日時計 ,  光周性 ,  形質転換植物 ,  レスポンスレギュレーター ,  Ds ,  分子生物学 ,  Ac ,  日長感受性 ,  フィトクローム ,  花芽形成 ,  トランスポゾンタギング ,  Se-1 ,  日長測定機構 ,  ジャポニカ種 ,  生殖隔離 ,  出穂 ,  Hd5 ,  FT遺伝子 ,  マッピング ,  Hd1 ,  luc ,  Ehd1 ,  二成分系信号伝達 ,  DNAメチル化 ,  MADS box遺伝子 ,  イントログレッシ ,  出穂期 ,  F1
Research theme for competitive and other funds  (12):
  • 2022 - 2027 Genomic dynamics underlying the plastic hermaphroditism in plants: the basis of exploratory reproductive adaptations
  • 2022 - 2025 イネフロリゲン遺伝子の超優性アリルの探索と人工雑種強勢の実現
  • 2018 - 2021 Identification of ambient temperature responsive genes in rice under fluctuating natural conditions
  • 2017 - 2020 Elucidation of plant genome evolution in rice breeding by long-read next genome sequencing data
  • 2010 - 2016 Systematic understanding of genome adaptation
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Papers (71):
  • Norihide Nishiyama, Akihisa Shinozawa, Takashi Matsumoto, Takeshi Izawa. High genome heterozygosity revealed vegetative propagation over the sea in Moso bamboo. BMC genomics. 2023. 24. 1. 348-348
  • Jinying Cui, Noriko Nishide, Kiyoshi Mashiguchi, Kana Kuroha, Masayuki Miya, Kazuhiko Sugimoto, Jun-Ichi Itoh, Shinjiro Yamaguchi, Takeshi Izawa. Fertilization controls tiller numbers via transcriptional regulation of a MAX1-like gene in rice cultivation. Nature communications. 2023. 14. 1. 3191-3191
  • Takeshi Izawa. Reloading DNA History in Rice Domestication. Plant & cell physiology. 2022. 63. 11. 1529-1539
  • Asanga Deshappriya Nagalla, Noriko Nishide, Ken-Ichiro Hibara, Takeshi Izawa. High Ambient Temperatures Inhibit Ghd7-Mediated Flowering Repression in Rice. Plant & cell physiology. 2021. 62. 11. 1745-1759
  • Hayato Yoshioka, Keiko Kimura, Yuko Ogo, Namie Ohtsuki, Ayako Nishizawa-Yokoi, Hironori Itoh, Seiichi Toki, Takeshi Izawa. Real-Time Monitoring of Key Gene Products Involved in Rice Photoperiodic Flowering. Frontiers in plant science. 2021. 12. 766450-766450
more...
MISC (46):
Professional career (1):
  • 博士(理学) (東京大学)
Work history (5):
  • 2016/04 - 現在 The University of Tokyo
  • 2001/10 - 2016/03 National Institute of Agrobiological Sciences
  • 1994/04 - 2001/09 Nara Institute of Science and Technology
  • 1988/04 - 1994/03 (株)植物工学研究所 研究員
  • 1990/04 - 1992/03 ロックフェラー大 客員研究員(植工研から出向)
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