Optimal Expression of GUS Gene from Methyl Jasmonate-Inducible Promoter in High Density Culture of Transformed Tobacco Cell Line BY-2
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概要
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The optimal expression of the β-glucuronidase (GUS) gene was studied in a tobacco cell line, BY-2,that was transformed with the GUS gene under the control of the cathepsin D inhibitor (CDI) promoter. In batch culture, the optimal induction time was in the late growth phase, and the optimal concentration of methyl jasmonate (MJ) was 0.7 mM. In fed-batch culture, the GUS specific activity when MJ was added several times was about 1.7-fold that when MJ was added only once. However, a significant decrease in the growth rate was observed after MJ addition. During the fed-batch culture, no medium components were depleted, and the presence of inhibitory metabolite(s) was observed. To remove inhibitory metabolite(s) from the medium, filtration culture was carried out, which gave a cell growth rate faster than that of the fed-batch culture. The final cell concentration and total GUS activity reached 480 g-fresh weight/l and 5.2 μkat/l, which were 1.3-fold and 1.5-fold the amounts obtained in fed-batch culture. The GUS specific activity using the CDI promoter was about 17-fold that obtained in a rbcS-promoter system studied previously Efficient foreign gene production from transformed BY-2 cells was thus performed on a fermentor scale.
- 社団法人日本生物工学会の論文
- 1996-07-25
著者
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KOBAYASHI Takeshi
Department of Electrical Engineering, Faculty of Engineering Science, Osaka University
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Uozumi N
Nagoya Univ. Nagoya Jpn
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Kobayashi T
Graduate School Of Marine Science And Technology Tokyo University Of Marine Science And Technology
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NAKAMURA Kenzo
Department of Urology, University of Yamanashi
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Kobayashi Takeshi
Department Of Biological Chemistry College Of Bioscience And Biotechnology Chubu University
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UOZUMI NOBUYUKI
Department of Biotechnology, Faculty of Engineering, Nagoya University
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Kobayashi T
Dep. Of Biological Mechanisms And Functions Graduate School Of Bioagricultural Sciences Nagoya Univ.
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Takao Shinji
Department Of Biotechnology Faculty Of Engineering
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Kobayashi T
Univ. Tsukuba Ibaraki Jpn
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SUEHARA Ken-ichiro
Department of Biotechnology, Graduate School of Engineering, Nagoya University
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Suehara Ken-ichiro
Hiroshima City University
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Nakamura Kenzo
Department Of Biological Mechanisms And Functions Graduate School Of Bioagricultural Sciences Nagoya
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Uozumi Nobuyuki
Department Of Biomolecular Engineering Graduate School Of Engineering Tohoku University
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Nakamura Kenzo
Department Of Applied Biological Sciences Faculty Of Agricultural Sciences Nagoya University
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