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J-GLOBAL ID:202101016629084069   Update date: Jun. 20, 2024

Hata Takayuki

ハタ タカユキ | Hata Takayuki
Affiliation and department:
Job title: Assistant Professor
Research theme for competitive and other funds  (6):
  • 2023 - 2026 ゲノム進化を駆動する新規遺伝子の誕生:その分子プロセスの実験的解明
  • 2024 - 2026 Study on the genetic engineering of the seaweed for the clinical application
  • 2023 - 2025 Study on the genetic engineering of the coenocytic green algae Bryopsis plumosa
  • 2019 - 2020 Development of the novel technology for the chromatin epigenetic analysis
  • 2017 - 2020 Studies on the molecular processes of horizontal gene transfer
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Papers (7):
  • Kohei Kawaguchi, Mei Kazama, Takayuki Hata, Mitsuhiro Matsuo, Junichi Obokata, Soichirou Satoh. Inducible Expression of the Restriction Enzyme Uncovered Genome-Wide Distribution and Dynamic Behavior of Histones H4K16ac and H2A.Z at DNA Double-Strand Breaks in Arabidopsis. Plant And Cell Physiology. 2023
  • Hisayuki Kudo, Mitsuhiro Matsuo, Soichirou Satoh, Takayuki Hata, Rei Hachisu, Masayuki Nakamura, Yoshiharu Y Yamamoto, Hiroshi Kimura, Minami Matsui, Junichi Obokata. Cryptic promoter activation occurs by at least two different mechanisms in the Arabidopsis genome. The Plant journal : for cell and molecular biology. 2021. 108. 1. 29-39
  • Takayuki Hata, Soichirou Satoh, Naoto Takada, Mitsuhiro Matsuo, Junichi Obokata. Kozak Sequence Acts as a Negative Regulator for De Novo Transcription Initiation of Newborn Coding Sequences in the Plant Genome. Molecular biology and evolution. 2021. 38. 7. 2791-2803
  • Takayuki Hata, Kazuki Mukae, Soichrou Satoh, Mitsuhiro Matsuo, Junichi Obokata. Preculture in an enriched nutrient medium greatly enhances the Agrobacterium-mediated transformation efficiency in Arabidopsis T87 cultured cells. Plant biotechnology (Tokyo, Japan). 2021. 38. 1. 179-182
  • Takayuki Hata, Naoto Takada, Chihiro Hayakawa, Mei Kazama, Tomohiro Uchikoba, Makoto Tachikawa, Mitsuhiro Matsuo, Soichirou Satoh, Junichi Obokata. De novo activated transcription of inserted foreign coding sequences is inheritable in the plant genome. PloS one. 2021. 16. 6. e0252674
more...
MISC (1):
  • 松尾 充啓, 畑 貴之, 佐藤 壮一郎, 小保方 潤一. 細胞内共生進化におけるDNA転移のメカニズム. 細胞. 2023. 55. 6. 430-433
Education (1):
  • 2017 - 2021 Kyoto Prefectural University Graduate School of Life and Environmental Sciences (MC and DC)
Professional career (1):
  • Doctor of Philosophy (Kyoto Prefectural University)
Association Membership(s) (4):
Japan Symbiosis Society ,  International Society of Endocytobiology ,  The Japanese Society of Plant Physiologists ,  The Molecular Biology Society of Japan
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

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