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SCREENING, ISOLATION AND IDENTIFICATION OF NITRILASE PRODUCING BACTERIA FROM SOIL

机译:土壤中硝化细菌的筛选,分离和鉴定

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Enzymes are identified as key catalysts in various processes occurring within the living cells. The role of various enzymes is constantly investigated to find their novel applications. Nitrilase is one such enzyme which carries out the hydrolysis of carbon-nitrogen bonds except for amides. This catalytic property of nitrilase is exploited to generate corresponding chiral carboxylic acids. These chiral molecules can be employed in various drug synthesis schemes. Nitrilase have been reported from various microorganisms with variable catalytic properties. With an objective to explore microorganisms which produce nitrilases and able to catalyze aromatic nitriles, screening of microorganisms from soil was carried out. Out of five soil sampling sites, screening from the soil sample taken from benzonitrile manufacturing industry (Anami Organics Ltd. Valsad, Gujarat-India) resulted in isolation of microorganism which was able to use benzonitrile as substrate and was positive for nitrilase enzyme assay which was done by modified indophenol method. The microorganism was later identified to be Bacillus thuringiensis using 16s rRNA and biochemical analysis. Nitrilase is present as an intracellular protein in this species
机译:在活细胞内发生的各种过程中,酶被确定为关键催化剂。不断研究各种酶的作用以发现其新的应用。腈水解酶是一种这样的酶,除了酰胺以外,它能进行碳-氮键的水解。利用腈水解酶的这种催化性质来产生相应的手性羧酸。这些手性分子可以用于各种药物合成方案中。已经从具有可变催化特性的各种微生物中报道了腈水解酶。为了探索产生腈水解酶并能够催化芳族腈的微生物,从土壤中筛选了微生物。在五个土壤采样点中,从苯甲腈制造行业(Anami Organics Ltd. Valsad,印度古吉拉特邦)采集的土壤样品中进行筛选,结果分离出了能够使用苯甲腈作为底物并且对腈水解酶检测呈阳性的微生物。通过改进的吲哚酚方法完成。后来使用16s rRNA和生化分析将其鉴定为苏云金芽孢杆菌。腈水解酶作为该物种的细胞内蛋白存在

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