Fang Xu, Yano Shinichi, Inoue Hiroyuki, Sawayama Shigeki
Biomass Technology Research Center, National Institute of Advanced Industrial Science and Technology, Kure, Hiroshima, Japan.
J Biosci Bioeng. 2008 Aug;106(2):115-20. doi: 10.1263/jbb.106.115.
Acremonium cellulolyticus is a fungus that produces cellulase and has been exploited by enzyme industry. To promote cellulase production by A. cellulolyticus strain C-1, we evaluated the effects of the saccharides: Solka Floc (cellulose), soluble soybean polysaccharide (SSPS), pullulan, lactose, trehalose, sophorose, cellobiose, galactose, sorbose, lactobionic acid, and mixtures as carbon sources for cellulase production. Solka Floc with SSPS enhanced cellulase production. Lactose as the sole carbon source induced cellulase synthesis in this fungus, and the synergistic effects between lactose and Solka Floc was observed. Various enzyme activities and the protein composition of crude enzyme produced by cultures with or without addition of lactose were analyzed. The results showed that lactose addition greatly improves the production of various proteins with cellulase activity by A. cellulolyticus. To our knowledge, this is the first report on production of cellulases by lactose in the A. cellulolyticus.
解纤维素顶孢霉是一种能产生纤维素酶的真菌,已被酶工业所利用。为了提高解纤维素顶孢霉C - 1菌株的纤维素酶产量,我们评估了糖类物质:索尔卡纤维(纤维素)、可溶性大豆多糖(SSPS)、普鲁兰多糖、乳糖、海藻糖、槐糖、纤维二糖、半乳糖、山梨糖、乳糖酸以及它们的混合物作为纤维素酶生产碳源的效果。索尔卡纤维与SSPS共同作用可提高纤维素酶产量。乳糖作为唯一碳源可诱导该真菌合成纤维素酶,并且观察到乳糖与索尔卡纤维之间的协同效应。分析了添加或不添加乳糖培养物所产生的粗酶的各种酶活性和蛋白质组成。结果表明,添加乳糖极大地提高了解纤维素顶孢霉产生具有纤维素酶活性的各种蛋白质的产量。据我们所知,这是关于乳糖诱导解纤维素顶孢霉产生纤维素酶的首次报道。