Berg J O, Nord C E, Wadström T
Appl Environ Microbiol. 1978 Feb;35(2):269-73. doi: 10.1128/aem.35.2.269-273.1978.
Nine strains of bacteroides fragilis were cultivated in stirred fermentors and tested for their ability to produce glycosidases. B. fragilis subsp. vulgatus B70 was used for optimizing the production of glycosidases. The highest bacterial yield was obtained in proteose peptone-yeast extract medium. The optimum pH for maximal bacterial yield was 7.0, and the optimum temperature for growth was 37 degrees C. The formation of glycosidases was optimal between pH 6.5 and 7.5, and the optimum temperature for synthesis of glycosidases was between 33 and 37 degrees C. Culture under controlled conditions in fermentors gave more reproducible production of glycosidases than static cultures in bottles. The strain was also grown in continuous culture at a dilution rate of 0.1 liter/h at pH 7.0 and 37 degrees C with a yield of 2.0 mg of dry weight per ml in the complex medium. The formation of glycosidases remained constant during the entire continuous process.
在搅拌式发酵罐中培养了9株脆弱拟杆菌,并测试了它们产生糖苷酶的能力。脆弱拟杆菌脆弱亚种B70用于优化糖苷酶的生产。在蛋白胨-酵母提取物培养基中获得了最高的细菌产量。最大细菌产量的最佳pH值为7.0,生长的最佳温度为37℃。糖苷酶的形成在pH 6.5至7.5之间最佳,糖苷酶合成的最佳温度在33至37℃之间。与瓶中的静态培养相比,在发酵罐中受控条件下培养能使糖苷酶的产量更具可重复性。该菌株还在pH 7.0和37℃下以0.1升/小时的稀释率进行连续培养,在复合培养基中的产量为每毫升2.0毫克干重。在整个连续过程中,糖苷酶的形成保持恒定。