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Optimizing the fermentation conditions and enhanced production of keratinase from Bacillus cereus isolated from halophilic environment

机译:优化从嗜盐环境分离的蜡状芽孢杆菌的发酵条件并提高角蛋白酶的生产

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摘要

Keratinase degrading Bacillus cereus was isolated from the halophilic environment in Tamilnadu, India and keratinase production was optimized using wheat bran substrate. Of the screened bacterial isolates, four were found to have the ability to produce keratinolytic enzyme. The process parameters were optimized using one-variable-at-a-time approach and response surface methodology. Supplementation of 1% lactose supported more keratinase production (120 U/g). Among the selected nitrogen sources, addition of casein significantly enhanced maximum keratinase production (132.5 U/g). Among the ions, manganese chloride significantly enhanced keratinsase production (102.6 U/g), however addition of zinc sulphate and copper sulphate decreased keratinase production. The maximum keratinase production was obtained in the wheat bran medium containing 1% lactose, 0.5% manganese with 80% moisture (292 U/g). Statistics based contour plots were generated to explore the variations in the response surface and to find the relationship between the keratinase yield and the bioprocess conditions.
机译:从印度泰米尔纳德邦的嗜盐环境中分离出了降解角蛋白的蜡状芽胞杆菌,并使用麦麸底物优化了角蛋白酶的生产。在筛选出的细菌分离物中,发现有四个具有产生角蛋白分解酶的能力。使用一次可变方法和响应面方法对工艺参数进行了优化。补充1%乳糖可增加角蛋白酶的产生(120 U / g)。在选定的氮源中,添加酪蛋白可显着提高最大角蛋白酶产量(132.5 U / g)。在这些离子中,氯化锰显着提高了角蛋白酶的产量(102.6 U / g),但是添加硫酸锌和硫酸铜会降低角蛋白酶的产量。在含有1%乳糖,0.5%锰和80%水分(292 U / g)的麦麸培养基中可获得最大的角蛋白酶产量。生成基于统计的等高线图,以探索响应表面中的变化并找到角蛋白酶产量与生物工艺条件之间的关系。

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