Chen Kejie, Zhou Jingwen, Liu Liming, Liu Jie, Du Guocheng, Chen Jian
State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
Sheng Wu Gong Cheng Xue Bao. 2010 Nov;26(11):1507-13.
This study aimed to further enhance 2-keto-L-gulonic acid (2-KLG) production efficiency. A strategy for enhancing Ketogulonigenium vulgare growth and 2-KLG production by improving B. megaterium growth with sucrose was developed based on the time course of osmolality during 2-KLG industrial scale fermentation and effects of osmolality on cells growth and 2-KLG production. Results showed that the accumulation of 2-KLG and the feeding of alkaline matter led to an osmolality rise of 832 mOsmol/kg in the culture broth. High osmotic stress (1 250 mOsmol/kg) made the growth ofB. megaterium and K. vulgare decreased 15.4% and 31.7%, respectively, and consequently the titer and productivity of 2-KLG reduced 67.5% and 69.3%, respectively. When supplement sucrose under high osmotic condition (1 250 mOsmol/kg), B. megaterium growth was significantly improved, with the result that 2-KLG production was increased 87%. Furthermore, by applying this sucrose addition strategy further to batch fermentation in 3 L fermentor, the productivity of 2-KLG increased 10.4%, and the duration of fermentation declined 10.8%. The results presented here provide a potential strategy for enhancing the target metabolites produced by mixed strains at environmental stress.
本研究旨在进一步提高2-酮基-L-古龙酸(2-KLG)的生产效率。基于2-KLG工业规模发酵过程中渗透压的时间进程以及渗透压对细胞生长和2-KLG生产的影响,制定了一种通过用蔗糖改善巨大芽孢杆菌的生长来提高酮古龙酸菌生长和2-KLG产量的策略。结果表明,2-KLG的积累和碱性物质的添加导致培养液中的渗透压升高了832 mOsmol/kg。高渗透压(1250 mOsmol/kg)使巨大芽孢杆菌和酮古龙酸菌的生长分别下降了15.4%和31.7%,结果2-KLG的滴度和生产率分别降低了67.5%和69.3%。在高渗条件(1250 mOsmol/kg)下补充蔗糖时,巨大芽孢杆菌的生长显著改善,结果2-KLG产量提高了87%。此外,通过将这种蔗糖添加策略进一步应用于3 L发酵罐的分批发酵中,2-KLG的生产率提高了10.4%,发酵时间缩短了10.8%。此处给出的结果为在环境胁迫下提高混合菌株产生的目标代谢物提供了一种潜在策略。