Hsu C A, Yu R C, Lee S L, Chou C C
Graduate Institute of Food Science and Technology, National Taiwan University 59, lane 144, Keelung Rd., Sec. 4, Taipei, Taiwan.
Int J Food Microbiol. 2007 May 1;116(1):186-9. doi: 10.1016/j.ijfoodmicro.2006.12.034. Epub 2007 Jan 19.
In the present study, the growth and production of beta-galactosidase by Bifidobacterium longum CCRC 15708 in a 5-L jar fermenter as influenced by cultivation temperature (27-42 degrees C), medium pH (4.5-7.5) and agitation speed (5-200 rpm) were evaluated. In general, it was found that a cultivation temperature of 37 degrees C proved optimal for both growth and beta-galactosidase production by the test organism. Although the growth of the test organism was the highest in the culture with pH controlled at 4.5-6.5, the culture with pH controlled at 6.5 resulted in the highest production of beta-galactosidase. Further, agitation at 100 rpm or more was found to enhance both the growth and production of beta-galactosidase. Fermentation conducted in a jar fermenter having the pH of the culture medium, the cultivation temperature, and the agitation speed controlled at 6.5, 37 degrees C, and 100 rpm, respectively, a maximum beta-galactosidase activity of 36.7 U/ml and a maximum transgalactosylation activity of 0.49 U/ml was achieved in 10 h of fermentation. There are ca 2.0 and 12.3 fold greater than the reported maximum beta-galactosidase and transgalactosylation activity, respectively, produced by B. longum CCRC 15708 in a flask culture system.
在本研究中,评估了长双歧杆菌CCRC 15708在5升罐式发酵罐中β-半乳糖苷酶的生长和产量,其受培养温度(27 - 42℃)、培养基pH值(4.5 - 7.5)和搅拌速度(5 - 200转/分钟)的影响。总体而言,发现37℃的培养温度对受试微生物的生长和β-半乳糖苷酶的产生均被证明是最佳的。尽管受试微生物在pH值控制在4.5 - 6.5的培养物中生长最高,但pH值控制在6.5的培养物产生的β-半乳糖苷酶产量最高。此外,发现100转/分钟或更高的搅拌速度可提高β-半乳糖苷酶的生长和产量。在罐式发酵罐中进行发酵,将培养基的pH值、培养温度和搅拌速度分别控制在6.5、37℃和100转/分钟,在10小时的发酵中实现了最大β-半乳糖苷酶活性为36.7 U/ml和最大转半乳糖基化活性为0.49 U/ml。这分别比长双歧杆菌CCRC 15708在摇瓶培养系统中报道的最大β-半乳糖苷酶和转半乳糖基化活性高约2.0倍和12.3倍。