首页> 外文期刊>Journal of Pure & Applied Microbiology >Bioprocess Development for High Cell Mass and Endospore Production by Bacillus thuringiensis var israelensis in Semi-Industrial ScaleAU Elsayed, Elsayed A. Othman, Nor Zalina Malek, Roslinda Awad, Hassan M. Wu, King Aziz, Ramlan Wadaan, Mohamad A. El Enshasy, Hesham A. (henshasy@ibd.utm.my)
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Bioprocess Development for High Cell Mass and Endospore Production by Bacillus thuringiensis var israelensis in Semi-Industrial ScaleAU Elsayed, Elsayed A. Othman, Nor Zalina Malek, Roslinda Awad, Hassan M. Wu, King Aziz, Ramlan Wadaan, Mohamad A. El Enshasy, Hesham A. (henshasy@ibd.utm.my)

机译:半工业规模的苏云金芽孢杆菌var israelensis的高细胞质量和内生孢子生产的生物工艺开发AU Elsayed,Elsayed A. Othman,Nor Zalina Malek,Roslinda Awad,Hassan M.Wu,King Aziz,Ramlan Wadaan,Mohamad A. Hesham A.(henshasy@ibd.utm.my)

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The process for high cell mass and spore production by Bacillus thuringiensis var israelensis (Bti) on semi-industrial scale was developed. Cultivations were conducted in shake flask and bioreactor levels to develop a semi-industrial scale process for the production of Bti cells and spores. The composition of the most suitable cultivation medium was further optimized to enhance biomass and spore production and also to reduce the production time. Furthermore, cultivations were performed in 16-L stirred tank bioreactor to investigate the scalability of this process and to study the effect of different aeration rates. The optimization of the main three components of the cultivation medium, i.e. glucose, ammonium sulphate and phosphate, resulted in a significant increase in both cell growth and spore formation by about 32% and 119%, respectively. Scaling up the cultivation process from shake flask to 16-L bioreactor further improved the process. Maximal cell mass of 16.06 g.L-1 concomitant with a spore production of 152x10(7) spores.mL(-1) was achieved in 1v.v(-1).min(-1) aerated culture. In terms of cell growth and spore production, these results were 5- and 8.5-fold higher, respectively, compared with the initial un-optimized medium in shake flask culture. The results obtained in this study improved the process of Bti production in semi-industrial scale through the optimization of both the cultivation medium composition and the aeration rate in pilot scale stirred tank bioreactor.C1 El Enshasy, Hesham A.; UTM, IBD, Skudai 81130, MalaysiaSC Biotechnology & Applied Microbiology
机译:开发了苏云金芽孢杆菌以色列半工业规模的高细胞量和孢子产生过程。在摇瓶和生物反应器中进行培养,以开发半工业规模的生产Bti细胞和孢子的方法。进一步优化了最合适的培养基的组成,以提高生物量和孢子产量,并减少生产时间。此外,在16升搅拌釜生物反应器中进行培养,以研究该过程的可扩展性并研究不同通气速率的影响。最优化培养基的三个主要成分,即葡萄糖,硫酸铵和磷酸盐,分别导致细胞生长和孢子形成分别显着增加约32%和119%。将培养过程从摇瓶扩大到16升生物反应器,进一步改善了该过程。在1v.v(-1).min(-1)充气培养中获得最大细胞质量16.06 g.L-1,同时产生152x10(7)孢子。mL(-1)。在细胞生长和孢子产生方面,与摇瓶培养中最初未优化的培养基相比,这些结果分别高出5倍和8.5倍。这项研究获得的结果通过优化中试搅拌釜生物反应器的培养基组成和通气率来优化了半工业规模的Bti的生产过程。C1El Enshasy,HeshamA。 UTM,IBD,马来西亚士姑来81130SC生物技术与应用微生物学

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