Rchr
J-GLOBAL ID:201801001024847521   Update date: May. 23, 2024

Harada Hisashi

Harada Hisashi
Research theme for competitive and other funds  (3):
  • 2022 - 2025 低炭素社会を志向した資源循環型微細藻類物質生産システムの構築
  • 2019 - 2024 Global impact of marine secondary chloroplast estimated from the function of diatom pyrenoid.
  • 2016 - 2020 Development of resource-recycling material production technology using marine microalgae
Papers (41):
  • Hiroaki Matsui, Hisashi Harada, Kanako Maeda, Toshiki Sugiyama, Yohei Fukuchi, Nanae Kimura, Hermanus Nawaly, Yoshinori Tsuji, Yusuke Matsuda. Coordinated phosphate uptake by extracellular alkaline phosphatase and solute carrier transporters in marine diatoms. The New phytologist. 2023
  • Ginga Shimakawa, Akane Okuyama, Hisashi Harada, Shuko Nakagaito, Yui Toyoshima, Kazuya Nagata, Yusuke Matsuda. Pyrenoid-core CO2-evolving machinery is essential for diatom photosynthesis in elevated CO2. Plant physiology. 2023. 193. 4. 2298-2305
  • Hisashi Harada, Daiki Senda, Takanori Shima, Chika Nakane. Carboxylesterases for the hydrolysis of acetoacetate esters and their applications in terpenoid production using Escherichia coli. Applied microbiology and biotechnology. 2021
  • Motoyasu Otani, Kosuke Kitayama, Hiroki Ishikuro, Jun-Ichiro Hattan, Takashi Maoka, Hisashi Harada, Yuko Shiotani, Akane Eguchi, Eiji Nitasaka, Norihiko Misawa. Construction of transgenic Ipomoea obscura that exhibits new reddish leaf and flower colors due to introduction of β-carotene ketolase and hydroxylase genes. Plant biotechnology (Tokyo, Japan). 2021. 38. 2. 219-226
  • Hisashi Harada. Pathway Engineering Using Escherichia coli to Produce Commercialized Carotenoids. Advances in experimental medicine and biology. 2021. 1261. 191-199
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MISC (27):
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Patents (14):
Lectures and oral presentations  (83):
  • Pathway engineering for high-yield production of lutein in Escherichia coli.
    (Synthetic biology (Oxford, England) 2021)
  • 海洋性珪藻類におけるエピソーム導入型多重遺伝子改変システムの開発
    (日本生物工学会大会講演要旨集 2018)
  • 有用テルペン類の実用生産を目指して-パスウェイエンジニアリングで「壁」に挑む-
    (日本農芸化学会中部支部例会講演要旨集(Web) 2017)
  • アセト酢酸エステルを基質としたイソプレノイド大量生産大腸菌株の作出
    (日本生物工学会大会講演要旨集 2017)
  • パスウェイエンジニアリングを施した大腸菌によるセスキテルペン生合成の最適条件検討
    (日本農芸化学会大会講演要旨集(Web) 2017)
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