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Bio-prospecting of cuttle fish waste andcow dung for the production of fibrinolytic enzyme from Bacillus cereus IND5 in solid state fermentation

机译:墨鱼废物的生物勘探和固态发酵中蜡状芽孢杆菌IND5产生纤溶酶的牛粪

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摘要

The process parameters governing the production of fibrinolytic enzyme in solid state fermentation employing Bacillus cereus IND5 and using cuttle fish waste and cow dung substrate were optimized. The pH value of the medium, moisture content, sucrose, casein and magnesium sulfate were considered for two-level full factorial design and pH, casein and magnesium sulfate were identified as the important factors for fibrinolytic enzyme production. Central composite design was applied to investigate the interactive effect among variables (pH, casein and magnesium sulfate) and response surface plots were created to find the pinnacle of process response. The optimized levels of factors were pH 7.8, 1.1% casein and 0.1% magnesium sulfate. Enzyme production was increased 2.5-fold after statistical approach. The enzyme was purified up to a specific activity of 364.5 U/g proteins and its molecular weight was 47 kDa. It was stable at pH 8.0 and was highly active at 50 °C. The mixture of cuttle fish waste and cow dung could find great application as solid substrate for the production of fibrinolytic enzyme.
机译:优化了控制蜡状芽孢杆菌IND5固态发酵,使用墨鱼排泄物和牛粪基质发酵过程中产生纤溶酶的工艺参数。两级全因子设计考虑了培养基的pH值,水分,蔗糖,酪蛋白和硫酸镁,并确定了pH,酪蛋白和硫酸镁是产生纤溶酶的重要因素。应用中央复合设计来研究变量(pH,酪蛋白和硫酸镁)之间的交互作用,并创建响应表面图以找到过程响应的顶峰。因子的最适水平为pH 7.8、1.1%酪蛋白和0.1%硫酸镁。统计方法后,酶的产量增加了2.5倍。该酶被纯化至比活性为364.5U / g蛋白,分子量为47kDa。在pH 8.0时稳定,在50°C时具有高活性。墨鱼排泄物和牛粪的混合物可作为生产纤维蛋白水解酶的固体底物得到广泛应用。

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