Effect of Culture Temperature Shift on the Cellular Sugar Accumulation of Chlorella vulgaris SO-26
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概要
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We investigated the effect of culture temperature on the maximum specific growth rate and cellular sugar accumulation, and the effect of a temperature shift on the sugar accumulation of cells of an Antarctic green alga, Chlorella vulgaris SO-26,in a batch culture system. Decreases in temperature appeared to correlate with decreases in the maximum specific growth rate; on the other hand, the cellular sugar content showed a reverse tendency against temperature. We attempted to use this tendency to improve sugar productivity in Chlorella. First, we cultured Chlorella at 20℃ during the logarithmic growth phase to obtain a high specific growth rate. The culture temperature was then shifted from 20℃ to 14℃ during the stationary growth phase to increase the cellular sugar content. As a result, we obtained a 25% increase in sugar production over that obtained by culture at 20℃ throughout the culture.
- 社団法人日本生物工学会の論文
- 1994-09-25
著者
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Kishimoto Michimasa
Department of Chemistry and Materials Technology, Kyoto Institute of Technology
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Nagamune Teruyuki
Department of Bioengineering, Graduate School of Engineering, The University of Tokyo
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Nagamune Teruyuki
Department Of Bioengineering Center For Nanobio Integration The University Of Tokyo:department Of Ch
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Shimomura Noriko
Nissan Motor Co. Ltd.
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Shimomura Noriko
Department Of Applied Biological Science Nihon University
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UEMURA IEAKI
Frontier Techonology Research Institute, Tokyo Gas Co. Ltd.,
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Endo Isao
Institute Of Physical And Chemical Research Riken
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Endo Isao
Institute Of Physical And Chemical Research
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NATORI Masahiko
Department of Applied Biological Sciences, Nihon University
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Nagashima Hideyuki
Department of Biology, Faculty of Industrial Science and Technology, Science University of Tokyo
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Kishimoto Michimasa
Deparmtnet Of Biotechnology Osaka University
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Kishimoto Michimasa
Department Of Biological Science And Technology Science University Of Tokyo
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Uemura Ieaki
Frontier Techonology Research Institute Tokyo Gas Co. Ltd.
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HOSONO HIDEYUKI
Frontier Technology Research Institute, Tokyo Gas Co. Ltd.,
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TAKUMI TSUGIHIKO
Frontier Technology Research Institute, Tokyo Gas Co. Ltd.,
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YASUDA TOSHIKO
Department of Biological Science and Technology, Science University of Tokyo
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Yasuda Toshiko
Department Of Biological Science And Technology Science University Of Tokyo
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Hosono Hideyuki
Frontier Technology Research Institute Tokyo Gas Co. Ltd.
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Takumi Tsugihiko
Frontier Technology Research Institute Tokyo Gas Co. Ltd.
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Natori Masahiko
Department Of Applied Biological Science Nihon University
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Nagashima H
Kamaishi Lab. Iwate Jpn
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Nagashima Hideyuki
Department Of Biological Science And Technology Sciecnce Univeristy Of Tokyo
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Nagamune Teruyuki
Department Of Chemistry And Biotechnology University Of Tokyo
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Uemura Ieaki
Frontier Technology Research Institute Tokyo Gas Co. Ltd.
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