Microbial Cell Factory Research Team, National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency, 113 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang, Pathum Thani 12120, Thailand.
FEMS Microbiol Lett. 2019 Mar 1;366(5). doi: 10.1093/femsle/fnz052.
In this study, production of fungal phytase in thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656 employing methanol-inducible OtAOX promoter and sucrose-inducible OtMal promoter was investigated in a high cell density fed-batch fermentation. Although a similar maximum cell concentration was obtained in both expression systems, the OtMal system gave ~2-fold higher phytase activity, specific yield, production yield, volumetric productivity and specific productivity rate compared with the OtAOX system. In addition to being more efficient, the OtMal system is more flexible because sucrose or sugarcane molasses can be utilized as less expensive carbon sources instead of glycerol in batch and fed-batch stages. Phytase yields from the OtMal system produced using sucrose or sugarcane molasses are comparable with those obtained with glycerol. We estimate the cost of phytase production by the OtMal system using sucrose or sugarcane molasses to be ~85% lower than the OtAOX system.
在这项研究中,我们使用甲醇诱导型 OtAOX 启动子和蔗糖诱导型 OtMal 启动子,在高细胞密度补料分批发酵中研究了耐热甲醇营养型酵母 Ogataea thermomethanolica TBRC656 中真菌植酸酶的生产。尽管在这两种表达系统中都获得了相似的最大细胞浓度,但与 OtAOX 系统相比,OtMal 系统的植酸酶活性、比生产速率、比产量和比生产率高约 2 倍。除了更高效之外,OtMal 系统更加灵活,因为在分批和补料分批阶段可以使用蔗糖或甘蔗糖蜜等更便宜的碳源代替甘油。使用蔗糖或甘蔗糖蜜生产的 OtMal 系统的植酸酶产量与使用甘油生产的产量相当。我们估计使用蔗糖或甘蔗糖蜜的 OtMal 系统生产植酸酶的成本比 OtAOX 系统低约 85%。