从低温环境中分离的嗜冷耐pH青霉(MCC 1049)长时间生产漆酶的研究

Q2 Biochemistry, Genetics and Molecular Biology
Enzyme Research Pub Date : 2014-01-01 Epub Date: 2014-03-09 DOI:10.1155/2014/120708
Kusum Dhakar, Rahul Jain, Sushma Tamta, Anita Pandey
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引用次数: 43

摘要

在不同的培养条件下,研究了嗜红青霉菌耐寒和耐pH菌株在长达35天的孵育下产生漆酶的情况。这种真菌最初是从印度喜马拉雅山区生态系统的低温环境中分离出来的。这些评估是在3种温度(15、25和35℃)下进行的,pH值范围(3.5-11.5),并存在包括碳和氮源、维生素和抗生素在内的补充剂。在25°C(真菌生长的最佳温度)和7.5 pH下记录了漆酶的最佳产量。第28天酶产量最高(11.6±0.52 U/L),第35天酶产量缓慢下降(10.6±0.80 U/L)。营养补充剂中的果糖和硝酸钾(0.2%)、抗生素中的氯霉素(0.1%)和维生素中的叶酸(0.1%)被发现是漆酶产生的最佳促进剂。在低温环境下,漆酶产量相对较低但持续较长时间可能是一种重要的生态现象。此外,使用各种补充剂提高酶的生产将有助于其在特定生物技术应用中的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Prolonged Laccase Production by a Cold and pH Tolerant Strain of Penicillium pinophilum (MCC 1049) Isolated from a Low Temperature Environment.

Prolonged Laccase Production by a Cold and pH Tolerant Strain of Penicillium pinophilum (MCC 1049) Isolated from a Low Temperature Environment.

Prolonged Laccase Production by a Cold and pH Tolerant Strain of Penicillium pinophilum (MCC 1049) Isolated from a Low Temperature Environment.

Prolonged Laccase Production by a Cold and pH Tolerant Strain of Penicillium pinophilum (MCC 1049) Isolated from a Low Temperature Environment.

Production of laccase by a cold and pH tolerant strain of Penicillium pinophilum has been investigated under different cultural conditions for up to 35 days of incubation. The fungus was originally isolated from a low temperature environment under mountain ecosystem of Indian Himalaya. The estimations were conducted at 3 temperatures (15, 25, and 35°C), a range of pH (3.5-11.5), and in presence of supplements including carbon and nitrogen sources, vitamins, and antibiotics. Optimum production of laccase was recorded at 25°C (optimum temperature for fungal growth) and 7.5 pH. The production of enzyme was recorded maximum on day 28 (11.6 ± 0.52 U/L) following a slow decline at day 35 of incubation (10.6 ± 0.80 U/L). Fructose and potassium nitrate (0.2%) among nutritional supplements, chloramphenicol (0.1%) among antibiotics, and folic acid (0.1%) among vitamins were found to be the best enhancers for production of laccase. Relatively lower but consistent production of laccase for a longer period is likely to be an ecologically important phenomenon under low temperature environment. Further, enhancement in production of enzyme using various supplements will be useful for its use in specific biotechnological applications.

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来源期刊
Enzyme Research
Enzyme Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
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