Hashem A M, Ismail A M, El-Refai M A, Abdel-Fattah A F
Department of Natural and Microbial Products Chemistry, National Research Centre, Dokki, Cairo, Egypt.
Cytobios. 2001;105(409):115-30.
Seven fungi were tested for production of mannanases. The highest mannanase activities were produced by Aspergillus oryzae NRRL 3488 after 7 days in static cultures. Mannanases were induced by gum locust bean (1.0%). The highest mannanase activity was produced when a mixture of peptone, urea and ammonium sulphate was used as nitrogen source. Zn2+ or Co2+ favoured enzyme production. The immobilized cells on Ca-alginate and agar were able to produce beta-mannanase for four runs with a slight decrease in the activity. The optimum temperature for enzyme reaction was 50-55 degrees C at pH 6.0. In the absence of substrate the enzyme was thermostable retaining 75% activity for 1 h at 50 degrees C, and 68% activity for 1 h at 60 degrees C.
对七种真菌进行了甘露聚糖酶生产测试。在静态培养7天后,米曲霉NRRL 3488产生的甘露聚糖酶活性最高。刺槐豆胶(1.0%)可诱导产生甘露聚糖酶。当使用蛋白胨、尿素和硫酸铵的混合物作为氮源时,产生的甘露聚糖酶活性最高。锌离子或钴离子有利于酶的产生。固定在海藻酸钙和琼脂上的细胞能够进行四轮β-甘露聚糖酶的生产,且活性略有下降。酶反应的最适温度为50-55℃,pH值为6.0。在没有底物的情况下,该酶具有热稳定性,在50℃下1小时保留75%的活性,在60℃下1小时保留6