State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangxi Microorganism and Enzyme Research Center of Engineering Technology; College of Life Science and Technology; Guangxi University, 100 Daxue Road, Nanning, 530004, Guangxi, China.
Sci Rep. 2019 May 2;9(1):6824. doi: 10.1038/s41598-019-43371-8.
The goal of this study was to develop a cheap and simple medium and to optimize fermentation parameters for fibrinolytic enzyme production by Bacillus subtilis WR350. A low-cost medium containing 35 g/L sucrose, 20 g/L corn steep powder and 2 g/L MgSO·7HO was developed via single-factor and orthogonal experiments. A cheap nitrogen source, corn steep powder, was used to replace the soy peptone present in the initial medium. The highest fibrinolytic activity of 5865 U/mL was achieved using the optimized medium in a 100-L fermenter with an aeration rate of 1.0 vvm and an agitation speed of 200 rpm. The resulting enzyme yield was among the highest described in the literature with respect to fibrinolytic activity, as determined by the fibrin plate method. Techno-economic evaluation indicated that the cost of the optimized medium was only 8.5% of the cost of the initial medium, and the total fermentation cost of fibrinolytic enzyme production using the optimized medium was 23.35% of the cost of using the initial medium.
本研究旨在开发一种廉价且简单的培养基,并优化枯草芽孢杆菌 WR350 生产纤溶酶的发酵参数。通过单因素和正交实验,开发了一种含有 35g/L 蔗糖、20g/L 玉米浆粉和 2g/L MgSO·7HO 的低成本培养基。用廉价的氮源玉米浆粉替代了初始培养基中的豆粕胨。在 100-L 发酵罐中,通气量为 1.0 vvm,搅拌速度为 200rpm,使用优化后的培养基可获得最高 5865U/mL 的纤溶酶活力。用纤维蛋白平板法测定,所得酶活力的纤溶活性在文献报道中属于最高水平之一。技术经济评估表明,优化培养基的成本仅为初始培养基成本的 8.5%,使用优化培养基生产纤溶酶的总发酵成本仅为使用初始培养基成本的 23.35%。