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Studies on the Production of Salt-Tolerant Alkaline Protease Isolated from Proteus mirabilis and Its Degradation of Hyper-Saline Soak Liquor

机译:从Proteus mirabilis中分离出耐盐性碱性蛋白酶的研究及其降解盐水浸渍液

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This study mainly focuses on the degradation of soluble biomolecules present in high salt containing (3-7%) Soak liquor (SL) discharge from the tanneries using the alkaline protease (AP) extracted from Proteus mirabilis (PM). The isolation of bacterial strains from SL was done and the screening for halophilic identification was carried out for the degradation of proteins at saline medium. The characterization of bacterial strain (PM) was carried out by using 16S-rDNA sequencing analysis. The bacterial strain (PM) growth rate was optimized with the effect of time, external carbon source, pH, temperature and metal ions. It was obtained time 48 h, pH - 7.0, T = 30 °C, addition of glucose as the external carbon source and the addition of Fe~(2+) saltsas optimum for the better growth rate of PM. The production of alkaline protease was carried out by using soak liquor as the substrate and the process parameters such as the effect of time, pH, and temperature were optimized. The activity and the stability of alkaline protease was done. The study on the degradation of proteins was carried out and the process parameters were optimized for the maximum conversion of proteins into amino acids. The instrumental analyses such as UV-visible, fluorescence, FT-IR spectroscopic studies, and TGA analysis confirmed the degradation of proteins into amino acid units present in the SL efficiently.
机译:该研究主要集中在使用蛋白质mirabilis(PM)中提取的碱性蛋白酶(AP)从制革中浸入含有(3-7%)浸泡液(SL)排出的溶解生物分子的降解。完成了来自SL的细菌菌株的分离,并进行盐培养基中蛋白质的降解的乳苄释放的筛选。通过使用16S-RDNA测序分析进行细菌菌株(PM)的表征。通过时间,外部碳源,pH,温度和金属离子的效果优化了细菌菌株(PM)生长速率。获得时间48小时,pH-7.0,T = 30℃,加入葡萄糖作为外部碳源,并为PM的更好的增长速率加入Fe〜(2+)盐。通过使用浸泡的液体作为基材进行碱性蛋白酶的产生,并且优化了时间,pH和温度的工艺参数,例如时间,pH和温度。碱性蛋白酶的活性和稳定性已完成。对蛋白质降解的研究进行了研究,并优化了工艺参数,以使蛋白质的最大转化为氨基酸。仪器分析如UV可见,荧光,FT-IR光谱研究和TGA分析证实了蛋白质的降解到高效地存在于SL中存在的氨基酸单元。

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