Rchr
J-GLOBAL ID:200901045303722051   Update date: May. 08, 2024

Takaya Naoki

タカヤ ナオキ | Takaya Naoki
Affiliation and department:
Job title: Professor
Research field  (1): Applied microbiology
Research theme for competitive and other funds  (33):
  • 2019 - 2024 Modeling the post-Koch ecosystem
  • 2019 - 2024 Post-Koch Ecology - The next-era microbial ecology
  • 2019 - 2024 Post-Koch Ecology: The next-era microbial ecology that elucidates the super-terrestrial organism system
  • 2019 - 2024 Integrated understanding of nitric oxide in yeasts and fungi and its application to microbial
  • 2018 - 2023 寄附講座助成
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Papers (158):
  • Katsuki, Nozomi, Fukushima, Riku, Doi, Yuki, Masuo, Shunsuke, Arakawa, Takatoshi, Yamada, Chihaya, Fushinobu, Shinya, Takaya, Naoki. Protocatechuate hydroxylase is a novel group A flavoprotein monooxygenase with a unique substrate recognition mechanism. The Journal of biological chemistry. 2024. 300. 1
  • Amahisa, Madoka, Tsukagoshi, Madoka, Kadooka, Chihiro, Masuo, Shunsuke, Takeshita, Norio, Doi, Yuki, Takagi, Hiroshi, Takaya, Naoki. The Metabolic Regulation of Amino Acid Synthesis Counteracts Reactive Nitrogen Stress via Aspergillus nidulans Cross-Pathway Control. Journal of fungi (Basel, Switzerland). 2024. 10. 1
  • Katsuki, Nozomi, Masuo, Shunsuke, Nukui, Noriyuki, Minakawa, Hajime, Takaya, Naoki. Gallic acid fermentation by metabolically engineered Escherichia coli producing p-hydroxybenzoate hydroxylase from Hylemonella gracilis NS1. The Journal of general and applied microbiology. 2023
  • Kawaguchi, Hideo, Masuo, Shunsuke, Wakai, Keiko, Takaya, Naoki, Hasunma, Tomohisa, Kaneko, Tatsuo, Okada, Satoshi, Sazuka, Takashi, Ogino, Chiaki, Kondo, Akihiko. Metabolic engineering for 4-aminophenylalanine production from lignocellulosic biomass by recombinant Escherichia coli. RSC Sustain. 2023
  • Itani, Ayaka, Masuo, Shunsuke, Yamamoto, Riho, Serizawa, Tomoko, Fukasawa, Yu, Takaya, Naoki, Toyota, Masatsugu, Betsuyaku, Shigeyuki, Takeshita, Norio. Local calcium signal transmission in mycelial network exhibits decentralized stress responses. PNAS nexus. 2023. 2. 3. pgad012-10
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MISC (1):
  • 沼館美法, 佐々文洋, 土肥裕希, 桝尾俊介, 竹下典男, 高谷直樹. Construction of a new microbial isolation and culture method using micro-well array device. 日本農芸化学会大会講演要旨集(Web). 2022. 2022
Patents (1):
  • Method for producing aniline derivative by fermentation from carbon source
Lectures and oral presentations  (79):
  • Rhodococcus sp. LC-2株のルミクロム分解機構の解明
    (日本農芸化学会 2024年度大会)
  • Filamentous fungi release extracellular vesicles at log- and stationary phases
    (32nd Fungal Genetics Conference)
  • Rhodococcus sp. LC-2株のルミクロム分解機構の解明
    (日本微生物生態学会 第36回大会)
  • Rhodococcus sp. LC-2株のルミクロム分解を担う新規Cytochrome P450水酸化酵素の解析
    (日本農芸化学会 関東支部 2023年度大会)
  • Rhodococcus sp. LC-2 株のルミクロム分解機構の解明
    (環境バイオテクノロジー学会 2023年度大会)
more...
Education (2):
  • - 1996 The University of Tokyo Graduate School, Division of Agriculture
  • - 1991 The University of Tokyo Faculty of Agriculture
Committee career (2):
  • 2015/04 - 2021/03 日本農芸化学会 学術活動強化委員会委員
  • 2017/04 - 2020/03 日本農芸化学会 倫理委員
Awards (5):
  • 2012/03 - 筑波大学 学長表彰(筑波大学)
  • 2012/02 - 第8回日本学術振興会賞
  • 2007/04 - 平成19年度科学技術分野の文部科学大臣表彰若手科学者賞
  • 2005/11 - 農学会 第4回日本農学進歩賞
  • 2005/03 - 日本農芸化学会 農芸化学奨励賞
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