Ikeda Yuko, Hayashi Hiroyuki, Okuda Naoyuki, Park Enock Y
Laboratory of Biotechnology, Department of Applied Biological Chemistry, Faculty of Agriculture, and Integrated Bioscience Section, Graduate School of Science and Technology, Shizuoka University, 836 Ohya, Shizuoka 422-8529, Japan.
Biotechnol Prog. 2007 Mar-Apr;23(2):333-8. doi: 10.1021/bp060201s. Epub 2007 Jan 25.
Cellulase production was investigated in a culture of a strain of Acremonium cellulolyticus. The medium components were optimized for the improvement of cellulase production. The maximum production of cellulolytic enzymes was obtained in a medium containing (grams per liter) 50 Solka Floc, 5 (NH4)2SO4, 24 KH2PO4, 4.7 potassium tartrate hemihydrate, 1.2 MgSO4.7H2O, 1 Tween 80, 4 urea, 0.01 ZnSO4.7H2O, 0.01 MnSO4.6H2O, and 0.01 CuSO4.7H2O, with a pH of 4.0. In the flask culture, 15.5 filter paper units (FPU)/mL of maximum cellulase activity was obtained, 17.42 FPU/mL in a 7-L bioreactor, and 13.08 FPU/mL in a 50-L scale bioreactor for 4-8 d at 30 degrees C. Average production rates were 1.94 FPU/mL.d in flasks, 2.86 FPU/mL.d in the 7-L bioreactor, and 2.56 FPU/mL.d in the 50-L bioreactor. Cellulase production on a small scale was successfully reproduced in the 50-L pilot scale bioreactor. Saccharification activity from A. cellulolyticus was compared with cellulolytic enzymes produced by other strains. The A. cellulolyticus culture broth had a comparable saccharification yield in comparison with those of other Trichoderma enzymes (GC220 or Cellulosin T2) under the same total cellulase activity. Its saccharification yield (percent of released reducing sugar to used dried substrate) was 60%, and its glucose content was 83%.
研究了纤维分解顶孢霉菌株培养物中的纤维素酶生产情况。对培养基成分进行了优化以提高纤维素酶产量。在含有(每升克数)50 索尔卡纤维粉、5 硫酸铵、24 磷酸二氢钾、4.7 半水酒石酸钾、1.2 七水硫酸镁、1 吐温 80、4 尿素、0.01 七水硫酸锌、0.01 六水硫酸锰和 0.01 七水硫酸铜且 pH 为 4.0 的培养基中获得了最大纤维素酶产量。在摇瓶培养中,最大纤维素酶活性为 15.5 滤纸单位(FPU)/毫升,在 7 升生物反应器中为 17.42 FPU/毫升,在 50 升规模生物反应器中于 30℃培养 4 - 8 天,为 13.08 FPU/毫升。摇瓶中的平均产率为 1.94 FPU/毫升·天,7 升生物反应器中为 2.86 FPU/毫升·天,50 升生物反应器中为 2.56 FPU/毫升·天。在 50 升中试规模生物反应器中成功重现了小规模的纤维素酶生产。将纤维分解顶孢霉的糖化活性与其他菌株产生的纤维素酶进行了比较。在相同的总纤维素酶活性下,纤维分解顶孢霉培养液的糖化产率与其他木霉属酶(GC220 或纤维素酶 T2)相当。其糖化产率(释放的还原糖占所用干燥底物的百分比)为 60%,葡萄糖含量为 83%。