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A psychrotolerant strain of Serratia marcescens (MTCC 4822) produces laccase at wide temperature and pH range

机译:粘质沙雷氏菌的抗精神病菌株(MTCC 4822)在宽温度和pH范围内产生漆酶

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摘要

A psychrotolerant bacterial strain of Serratia marcescens, originally isolated from a glacial site in Indian Himalayan Region (IHR), has been investigated for laccase production under different culture conditions. The bacterial strain was found to grow between 4 to 45°C (opt. 25°C) and 3 to 14 pH (opt. 5 pH) on prescribed growth medium, coinciding with production of laccase in laccase producing medium. However, the production of laccase was more consistent toward alkaline pH. Laccase enzyme was partially purified using gel filtration chromatography. The molecular mass of laccase was determined ~53 kDa on native PAGE. The Km and Vmax values were determined to be 0.10 mM and 50.00 μM min−1, respectively, with ABTS. Inoculum size (4.0% v/v at 1.5 O.D.) resulted in significantly higher production of laccase. Carbon and nitrogen sources also affected the laccase production significantly. All the carbon sources enhanced laccase production, xylose being the best enhancer (P < 0.01). Among nitrogen sources, organic sources were found to act as inhibitors (P < 0.01), and among the in-organic sources only sodium nitrate enhanced the laccase production. Low molecular weight organic solvents significantly (P < 0.01) enhanced laccase production up to 24 h of incubation with a decline in later incubation period. Production of laccase by the psychrotolerant bacterium in wide range of temperature and pH is likely to have inference in biotechnological processes.
机译:最初从印度喜马拉雅山地区(IHR)的一个冰川地点分离出的一种耐腐质粘质沙雷氏菌(Serratia marcescens)菌株,已对其在不同培养条件下产生漆酶的情况进行了研究。发现该细菌菌株在规定的生长培养基上生长在4至45°C(最佳25°C)和3至14 pH(最佳5 pH)之间,这与在漆酶生产培养基中生产漆酶相吻合。然而,漆酶的产生对碱性pH更一致。使用凝胶过滤色谱法部分纯化漆酶。在天然PAGE上测定漆酶的分子量约为53 kDa。用ABTS将Km和Vmax值分别确定为0.10 mM和50.00μMmin -1 。接种量(1.5 O.D下为4.0%v / v)导致漆酶的产量大大提高。碳和氮源也显着影响漆酶的生产。所有碳源均增强了漆酶的产生,木糖是最好的增强剂(P <0.01)。在氮源中,发现有机源可作为抑制剂(P <0.01),而在无机源中,仅硝酸钠可增强漆酶的产生。低分子量有机溶剂(P <0.01)可以在长达24小时的培养时间内显着提高漆酶的产量,而在随后的培养时间内却有所下降。在宽泛的温度和pH范围内,抗精神病菌产生漆酶可能与生物技术过程有关。

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