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Optimization of Culture Conditions for the Production of Extracellular Cellulase from Corynebacterium lipophiloflavum

机译:从脂黄杆菌棒状杆菌生产细胞外纤维素酶的培养条件的优化

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Cellulolytic enzyme producing bacteria were isolated from decaying vegetables on nutrient agar plates. As many as fourteen different bacterial strains were isolated and they were screened for the production of cellulase enzyme on a medium containing carboxymethyl cellulose (0.5% w/v). A Congo red dye based qualitative assay was performed to identify cellulase producing bacteria isolated from the vegetables. Among the difference strains, after screening on CMC agar, one strain exhibited relatively higher cellulase activity and was identified as Cornybacterium lipophiloflavum by a bacteriologist. Culture conditions were optimized for the above bacterium in the production medium supplemented with different carbon and nitrogen sources, different pH and different concentrations of CMC. Glucose and yeast extract proved to be the suitable carbon and nitrogen sources while pH 7.0 was ideal for cellulase production by the bacterium. Carboxymethyl cellulose at 1% in the medium induced relatively higher cellulase activity. Electrophoretic analysis of the ammonium sulfate precipitated proteins showed three prominent bands and whose molecular masses were estimated as 60, 69 and 75 kDa. ? Cellulase produced by Cornybacterium lipophiloflavum could efficiently remove dyes or inks from the pulp incubated either in the form of intact growing cell or with clarified supernatant. The enzyme also removed starch from the fabric incubated with culture supernatant suggesting the potential use of Cornybacterium lipophiloflavum cellulase in industrial applications.
机译:从营养琼脂平板上的腐烂蔬菜中分离出产生纤维素酶的细菌。分离出多达十四种不同的细菌菌株,并在含有羧甲基纤维素(0.5%w / v)的培养基上筛选纤维素酶的产生。进行了基于刚果红染料的定性分析,以鉴定从蔬菜中分离出的产生纤维素酶的细菌。在不同的菌株中,在CMC琼脂上筛选后,一种菌株表现出相对较高的纤维素酶活性,并被细菌学家鉴定为脂黄素玉米杆菌。针对上述细菌,在补充有不同碳和氮源,不同pH和不同浓度CMC的生产培养基中优化了培养条件。葡萄糖和酵母提取物被证明是合适的碳和氮源,而pH 7.0是细菌生产纤维素酶的理想选择。培养基中1%的羧甲基纤维素诱导相对较高的纤维素酶活性。硫酸铵沉淀蛋白的电泳分析显示三个突出的条带,其分子质量估计为60、69和75 kDa。 ?脂褐黄素杆菌产生的纤维素酶可以有效地从完整培养的细胞形式或澄清的上清液中培养出的果肉中除去染料或油墨。该酶还从与培养上清液一起孵育的织物中去除了淀粉,这表明脂溶性黄酮杆菌纤维素酶在工业应用中的潜在用途。

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