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Partial characterization of cold active amylases and proteases of Streptomyces sp. from Antarctica

机译:链霉菌属的冷活性淀粉酶和蛋白酶的部分表征。来自南极洲

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摘要

The aim of this study was to isolate novel enzyme-producing bacteria from vegetation samples from East Antarctica and also to characterize them genetically and biochemically in order to establish their phylogeny. The ability to grow at low temperature and to produce amylases and proteases cold-active was also tested. The results of the 16S rRNA gene sequence analysis showed that the 4 Alga rRNA was 100% identical to the sequences of Streptomyces sp. rRNA from Norway and from the Solomon Islands. The Streptomyces grew well in submerged system at 20°C, cells multiplication up to stationary phase being drastically increased after 120 h of submerged cultivation. The beta-amylase production reached a maximum peak after seven days, while alpha-amylase and proteases were performing biosynthesis after nine days of submerged cultivation at 20°C. Newly Streptomyces were able to produce amylase and proteases in a cold environment. The ability to adapt to low temperature of these enzymes could make them valuable ingredients for detergents, the food industry and bioremediation processes which require low temperatures.
机译:这项研究的目的是从南极东部的植被样本中分离出新型的产生酶的细菌,并对它们进行遗传和生物化学表征,以建立其系统发育史。还测试了在低温下生长以及产生冷活性淀粉酶和蛋白酶的能力。 16S rRNA基因序列分析的结果表明,4个Alga rRNA与链霉菌sp。的序列100%相同。来自挪威和所罗门群岛的rRNA。链霉菌在20°C的浸没系统中生长良好,在浸没培养120 h后,直至静止期的细胞增殖急剧增加。在20天的水下培养9天后,β-淀粉酶的产量达到最高峰,而α-淀粉酶和蛋白酶则在进行生物合成。新的链霉菌能够在寒冷的环境中产生淀粉酶和蛋白酶。这些酶的低温适应能力使其成为需要低温的洗涤剂,食品工业和生物修复工艺的重要成分。

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