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Aeration rate effect on the growth kinetics, phytase production and plasmid stability of recombinant Escherichia coli BL21 (DE3)

Nor Zalina, Othman and Elsayed A., Elsayed and Abd. Malek, Roslinda and Solleh, Ramli and Masri, Helmy J. and Sarmidi, Mohamad Roji and Abdul Aziz, Ramlan and Wadaan, Mohamad A. and Hatti-Kaul, Rajni and Hesham A., El Enshasy (2014) Aeration rate effect on the growth kinetics, phytase production and plasmid stability of recombinant Escherichia coli BL21 (DE3). Journal of Pure and Applied Microbiology, 8 (4). pp. 2721-2728. ISSN 0973-7510

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Official URL: http://www.academia.edu/8232923/Aeration_Rate_Effe...

Abstract

Phytase production using Escherichia coli BL21 (DE3), a recombinant strainharboring a plasmid encoding thermostable Bacillus phytase, in semi-industrial scalewas studied in this work. Among the factors needed to be considered in order to achievehigh enzyme yield, aeration rate plays an important role. Suitable aeration is required tosupply cells with sufficient amount of air for cell and phytase production. The effect of different aeration rates, (1.0, 2.0 and 3.0 vv -1 min -1 ), on the kinetics of cell growth andphytase production by the recombinant E. coli BL21 (DE3) in 16-L pilot scale stirred tankbioreactor was investigated. The highest cell concentration of 3.81 gL -1 concomitant withthe maximal total phytase production of 15.63 UmL -1 were obtained in a bioreactor of aeration rate 3.0vv -1 min -1 . At this high aeration rate, a maximal specific growth rate (µ max )and the maximal specific phytase production of 0.33 h -1 and 4102Ug -1 , respectively, wereachieved

Item Type:Article
Uncontrolled Keywords:aeration rate, bioreactor cultivation, Escherichia coli, phytase production, plasmid stability
Subjects:T Technology > TP Chemical technology
Divisions:Chemical Engineering
ID Code:51737
Deposited By: Siti Nor Hashidah Zakaria
Deposited On:01 Feb 2016 03:52
Last Modified:16 Oct 2018 07:30

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