首页> 外文期刊>Applied Biochemistry and Biotechnology >Extracellular Production of Novel Halotolerant, Thermostable, and Alkali-Stable Carboxymethyl Cellulase by Marine Bacterium Marinimicrobium sp. LS-A18
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Extracellular Production of Novel Halotolerant, Thermostable, and Alkali-Stable Carboxymethyl Cellulase by Marine Bacterium Marinimicrobium sp. LS-A18

机译:海洋细菌Marinimicrobium sp。产生的新型耐盐,耐高温和碱稳定的羧甲基纤维素酶的细胞外产生。 LS-A18

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摘要

Cellulases which are active and stable under extreme conditions have attracted considerable attention because of their potential industrial applications. Marinimicrobium sp. LS-A18 showed high extracellular carboxymethylcellulase (CMCase) activity when grown on mineral salt medium containing carboxymethylcellulose as the sole carbon source. Maximum CMCase activity was obtained at 55°C and pH 7.0 in the absence of NaCl. Under the optimized fermentation conditions, the yield of CMCase was increased up to 2.5 U/ml, which was 3.1-fold higher than that before optimization. The enzyme retained 84 % of residual activity after incubation at 60°C for 1 h and more than 88 % of residual activity after incubation for 72 h in the presence of different pH (5–11) and NaCl concentrations (0–25 %, w/v), indicating it was halotolerant, thermostable and alkali-stable. These characteristics made the CMCase from Marinimicrobium sp. LS-A18 as a potentially novel biocatalyst in biotechnological and industrial applications.
机译:在极端条件下具有活性和稳定性的纤维素酶由于其潜在的工业应用而备受关注。 Marinimicrobium sp。当在含有羧甲基纤维素作为唯一碳源的矿物盐培养基上生长时,LS-A18显示出高的细胞外羧甲基纤维素酶(CMCase)活性。在不存在NaCl的情况下,在55°C和pH 7.0下获得了最大的CMCase活性。在优化的发酵条件下,CMCase的产量提高到2.5 U / ml,是优化前的3.1倍。该酶在60°C下孵育1小时后保留84%的残留活性,在不同pH(5-11)和NaCl浓度(0-25%, w / v),表明它是卤代耐溶剂的,热稳定的和碱稳定的。这些特征使得Marinimicrobium sp。的CMCase成为可能。 LS-A18在生物技术和工业应用中是潜在的新型生物催化剂。

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