『徳島大学 教育・研究者情報データベース (EDB)』---[学外] /
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種別 (必須): 学術論文 (審査論文) [継承]
言語 (必須): 英語 [継承]
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審査 (推奨): Peer Review [継承]
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組織 (推奨): 1.徳島大学.大学院ソシオテクノサイエンス研究部.ライフシステム部門.物質機能化学 (〜2016年3月31日) [継承]
著者 (必須): 1. (英) Niu Liyuan (日) (読)
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2. (英) Nomura Kazuki (日) (読)
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3. (英) Iwahashi Hitoshi (日) 岩橋 均 (読)
役割 (任意): (英)   (日) 実験と学会発表   [継承]
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4. (英) Matsuoka Hiroyuki (日) 松岡 寛之 (読)
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5.河内 哲史
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6.鈴木 良尚 ([徳島大学.大学院社会産業理工学研究部.理工学域.応用化学系.物質機能化学分野]/[徳島大学.理工学部.理工学科.応用化学システムコース.物質機能化学講座])
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7.田村 勝弘
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題名 (必須): (英) Urea cycle is enhanced by petit-high pressure carbon dioxide stress in yeast Saccharomyces cerevisiae  (日)    [継承]
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要約 (任意): (英) It has been demonstrated that pasteurized effect on microorganisms of petit-high pressure carbon dioxide (p-HPCD) with long time treatment is similar to the effect of HPCD with short time treatment. The petit-high pressure refers to a pressure of 1.513atm (standard atmosphere). After 0.5MPa of CO2 at 25°C for 2h treatment, specific growth rate of yeast cells in the logarithm phase was decreased by 50% approximately. Under this condition, our study analyzed transcriptional responses of Saccharomyces cerevisiae through the functional genomic approach. Transcription of 837 open reading frames (ORFs) was altered relative to cells without treatment and 476 ORFs were induced after p-HPCD treatment. These selected genes were then categorized by function of gene product using the Munich Information Centre for Protein Sequences database. Genes involved in metabolism of the urea cycle were found to be significantly induced. This enhanced metabolic process could help to remove redundant HCO3 in cellular interior, thereby decrease the production of CO23. Liberation of H+ ion could be decreased along with the inhibition of HCO3 dissociation.  (日)    [継承]
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発行所 (推奨): Taylor & Francis [継承]
誌名 (必須): High Pressure Research (International Association for the Advancement of High Pressure Science and Technology)
(pISSN: 0895-7959, eISSN: 1477-2299)

ISSN (任意): 0895-7959
ISSN: 0895-7959 (pISSN: 0895-7959, eISSN: 1477-2299)
Title: High pressure research
Title(ISO): High Press Res
Supplier: Taylor & Francis Online
Publisher: Taylor & Francis
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年月日 (必須): 西暦 2016年 11月 30日 (平成 28年 11月 30日) [継承]
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DOI (任意): 10.1080/08957959.2016.1261404    (→Scopusで検索) [継承]
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標準的な表示

和文冊子 ● Liyuan Niu, Kazuki Nomura, Hitoshi Iwahashi, Hiroyuki Matsuoka, Satoshi Kawachi, Yoshihisa Suzuki and Katsuhiro Tamura : Urea cycle is enhanced by petit-high pressure carbon dioxide stress in yeast Saccharomyces cerevisiae, High Pressure Research, 37, 1, 1-8, 2016.
欧文冊子 ● Liyuan Niu, Kazuki Nomura, Hitoshi Iwahashi, Hiroyuki Matsuoka, Satoshi Kawachi, Yoshihisa Suzuki and Katsuhiro Tamura : Urea cycle is enhanced by petit-high pressure carbon dioxide stress in yeast Saccharomyces cerevisiae, High Pressure Research, 37, 1, 1-8, 2016.

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