Isar Jasmine, Agarwal Lata, Saran Saurabh, Saxena Rajendra Kumar
Department of Microbiology, University of Delhi South Campus, Benito Juarez Road, New Delhi 110021, India.
Anaerobe. 2006 Oct-Dec;12(5-6):231-7. doi: 10.1016/j.anaerobe.2006.07.001. Epub 2006 Sep 15.
We report the effect of different physiological and nutritional parameters on succinic acid production from Bacteroides fragilis. This strain initially produced 0.70gL(-1) of succinic acid in 60h. However, when process optimization was employed, 5.4gL(-1) of succinic acid was produced in medium consisting of glucose (1.5%); tryptone (2.5%); Na(2)CO(3) (1.5%), at pH 7.0, when inoculated with 4% inoculum and incubated at 37 degrees C, 100rpm for 48h. A marked enhancement in succinic acid production was observed when the optimized conditions were employed in a 10L bioreactor. A total of 12.5gL(-1) of succinic acid was produced in 30h. This is approximately 12-fold increase in succinic acid production when compared to the initial un-optimized medium production. This enhancement in succinic acid production may be due to the control of CO(2) supply and the impeller speed. This is also resulted in the reduction of the production time. The present study provides useful information to the industrialists seeking environmentally benign technology for the production of bulk biomolecules through manipulation of various chemical parameters.
我们报告了不同生理和营养参数对脆弱拟杆菌琥珀酸产量的影响。该菌株最初在60小时内产生0.70gL(-1)的琥珀酸。然而,采用工艺优化后,在由葡萄糖(1.5%)、胰蛋白胨(2.5%)、Na(2)CO(3)(1.5%)组成的培养基中,pH值为7.0,接种4%的接种物,于37℃、100rpm培养48小时时,可产生5.4gL(-1)的琥珀酸。当在10L生物反应器中采用优化条件时,观察到琥珀酸产量显著提高。在30小时内共产生了12.5gL(-1)的琥珀酸。与最初未优化的培养基产量相比,琥珀酸产量增加了约12倍。琥珀酸产量的提高可能归因于对CO(2)供应和搅拌器速度的控制。这也导致了生产时间的减少。本研究为寻求通过操纵各种化学参数来生产大宗生物分子的环境友好型技术的实业家提供了有用信息。