Inexpensive fed-batch cultivation for high poly(3-hydroxybutyrate) production by a new isolate of Bacillus megaterium(MICROBIAL PHYSIOLOGY AND BIOTECHNOLOGY)
スポンサーリンク
概要
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This research aimed at increasing the cell density and production of the homopolymer polyhydroxybutyrate(PHB) by Bacillus megaterium BA-019, using renewable and inexpensive bioresources as a substrate. A higher cell density and a greater PHB production level were obtained by using sugarcane molasses and urea as carbon and nitrogen sources, respectively. The limitation of nitrogen at a C/N molar ratio of 25 resulted in enhanced cell growth and PHB production in batch cultures. Fed-batch cultivation with the feeding nutrient composed of MSM with sugarcane molasses, urea and trace elements, and controlled by a pH-stat feeding control, lead to a significantly enhanced cell concentration and PHB production. The optimal feeding medium in this system required a higher total sugar concentration(400g/l) and a C/N molar ratio of 10mol/mol. Under these conditions the highest attained cell mass(72.6g/l DW) and PHB content(42% of cell dry wt.) were achieved in a short cultivation time(24h), leading to improved PHB productivity(1.27g/l/h). However, dissolved oxygen was limiting and thus the system is likely to be suboptimal and capable of even further improvements to the PHB production rate.
著者
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Kulpreecha Songsri
Department Of Microbiology Faculty Of Science Chulalongkorn University
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Boonruangthavorn Atipol
Department of Microbiology, Faculty of Science, Chulalongkorn University
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Meksiriporn Boonyarit
Department of Microbiology, Faculty of Science, Chulalongkorn University
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Thongchul Nuttha
Institute of Biotechnology and Genetic Engineering, Chulalongkorn University
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Thongchul Nuttha
Institute Of Biotechnology And Genetic Engineering Chulalongkorn University
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Meksiriporn Boonyarit
Department Of Microbiology Faculty Of Science Chulalongkorn University
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Boonruangthavorn Atipol
Department Of Microbiology Faculty Of Science Chulalongkorn University
関連論文
- Inexpensive fed-batch cultivation for high poly(3-hydroxybutyrate) production by a new isolate of Bacillus megaterium(MICROBIAL PHYSIOLOGY AND BIOTECHNOLOGY)
- Production and Characterization of Biodegradable Terpolymer Poly(3-Hydroxybutyrate-co-3-Hydroxyvalerate-co-4-Hydroxybutyrate) by Alcaligenes sp. A-04(ENVIRONMENTAL BIOTECHNOLOGY)