从受碳氢化合物污染的生境中分离出来的耐溶剂嗜碱性芽孢杆菌 MTCC 7942 生产碱性蛋白酶:工艺参数优化。

ISRN biochemistry Pub Date : 2013-11-28 eCollection Date: 2013-01-01 DOI:10.1155/2013/942590
Ulhas Patil, Ambalal Chaudhari
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引用次数: 0

摘要

在本次调查中,报告了一株新分离的耐有机溶剂和嗜碱性细菌菌株,该菌株来自于从印度希尔普尔加油站收集的受碳氢化合物(汽油和柴油)污染的土壤。根据表型、生化和 16S rRNA 基因序列的系统进化分析,确定该菌株为环状芽孢杆菌 MTCC 7942。研究人员探索了环状芽孢杆菌分泌胞外、恒温、碱性蛋白酶和在有机溶剂存在下生长的能力。在优化培养基(g/L):豆粕,15;淀粉,10;KH2PO4,1;MgSO4-7H2O,0.05;CaCl2,1;Na2CO3,8;pH 10.0,37°C,100 rpm条件下,环状芽孢杆菌产生最大碱性蛋白酶(412 U/mL)。该菌株能在各种有机溶剂--辛烷、十二烷、正癸烷、N,N-二甲基甲酰胺、正己烷和二甲亚砜--中生长,这证明它具有作为溶剂稳定蛋白酶源的潜力,可用于非水基反应和精细化学品合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Production of Alkaline Protease by Solvent-Tolerant Alkaliphilic Bacillus circulans MTCC 7942 Isolated from Hydrocarbon Contaminated Habitat: Process Parameters Optimization.

Production of Alkaline Protease by Solvent-Tolerant Alkaliphilic Bacillus circulans MTCC 7942 Isolated from Hydrocarbon Contaminated Habitat: Process Parameters Optimization.

Production of Alkaline Protease by Solvent-Tolerant Alkaliphilic Bacillus circulans MTCC 7942 Isolated from Hydrocarbon Contaminated Habitat: Process Parameters Optimization.

Production of Alkaline Protease by Solvent-Tolerant Alkaliphilic Bacillus circulans MTCC 7942 Isolated from Hydrocarbon Contaminated Habitat: Process Parameters Optimization.

In the present investigation, a newly isolated organic solvent-tolerant and alkaliphilic bacterial strain was reported from a hydrocarbon (gasoline and diesel) contaminated soil collected from the petrol station, Shirpur (India). The strain was identified as Bacillus circulans MTCC 7942, based on phenotype, biochemical, and phylogenetic analysis of 16S rRNA gene sequence. The capability of Bacillus circulans to secrete an extracellular, thermostable, alkaline protease and grow in the presence of organic solvents was explored. Bacillus circulans produced maximum alkaline protease (412 U/mL) in optimized medium (g/L): soybean meal, 15; starch, 10; KH2PO4, 1; MgSO4·7H2O, 0.05; CaCl2, 1; Na2CO3, 8; pH 10.0 at 37°C and 100 rpm. The competence of strain to grow in various organic solvents-n-octane, dodecane, n-decane, N,N-dimethylformamide, n-hexane, and dimethyl sulfoxide, establishes its potential as solvent-stable protease source for the possible applications in nonaqueous reactions and fine chemical synthesis.

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