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Production of Fungal Amylases Using Cheap Readily Available Agriresidues for Potential Application in Textile Industry

机译:利用廉价容易获得的农残生产真菌淀粉酶潜在地应用于纺织工业

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摘要

The study aimed at isolation and screening of fungal amylase producer, optimization of solid state fermentation conditions for maximum amylase production by the best amylase producer, and characterization of the crude amylases, so produced. Aspergillus fumigatus NTCC1222 showed the highest amylase activity (164.1 U/mL) in secondary screening under SSF conditions and was selected for further studies. The test strain showed maximum amylase production (341.7 U/mL) and supernatant protein concentration (9.7 mg/mL) for incubation period (6 days), temperature (35°C), initial pH (6.0), nutrient salt solution as moistening agent, and beef extract as nitrogen source. Pomegranate peel produced maximum amylase activity, but wheat bran (only slightly lesser amylase activity as compared to that of pomegranate peel) was chosen for further studies, keeping in mind the seasonal availability of pomegranate peel. TLC confirmed the amylase produced to be α-type and 60 kDa was the molecular weight of the partially purified amylase. The enzyme showed maximum enzyme activity at pH 6.0, temperature of 55°C, and incubation time of 60 minutes. UV (616.0 U/mL) and chemical (814.2 U/mL) mutation enhanced amylase activity as compared to wild test strain. The study indicates that Aspergillus fumigatus NTCC1222 can be an important source of amylase and the crude enzyme, hence obtained, can be cost effectively applied in multiple sections of textile wet processing.
机译:该研究旨在分离和筛选真菌淀粉酶产生剂,优化固态发酵条件,以使最好的淀粉酶产生剂产生最大的淀粉酶,并鉴定所产生的粗淀粉酶的特性。烟曲霉NTCC1222在SSF条件下的二次筛选中显示出最高的淀粉酶活性(164.1 U / mL),并被选择作进一步研究。测试菌株在培养期(6天),温度(35°C),初始pH(6.0),营养盐溶液作为润湿剂的条件下,显示出最大的淀粉酶产量(341.7 U / mL)和上清液蛋白浓度(9.7 mg / mL)。和牛肉提取物作为氮源。石榴皮产生最大的淀粉酶活性,但要考虑到石榴皮的季节性可用性,因此选择了麦麸(与石榴皮相比,淀粉酶的活性略低)。 TLC证实产生的淀粉酶是α型,并且60 kDa是部分纯化的淀粉酶的分子量。该酶在pH 6.0,温度55°C和孵育时间60分钟时显示出最大的酶活性。与野生试验菌株相比,UV(616.0 U / mL)和化学(814.2 U / mL)突变增强了淀粉酶活性。研究表明,烟曲霉NTCC1222可能是淀粉酶的重要来源,因此获得的粗酶可以经济有效地应用于纺织品湿法加工的多个领域。

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