Optimization of Inulinase Production by a Fungal Species Isolated From Rotten Garlic Samples

Q3 Biochemistry, Genetics and Molecular Biology
A. Surti, S. Mhatre
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引用次数: 2

Abstract

Introduction: Inulinases are β-fructohydrolase enzymes that catalyze the hydrolysis of inulin. Recently, this enzyme has gained much importance mainly due to its ability to produce high-density fructose syrup using inulin as a raw material. In the current study, screening of inulinase-producing microorganisms was carried out from the rhizosphere soil of the Dahlia plant and rotten garlic samples. Materials and Methods: The inulinase activity was detected with the help of 3,5-dinitrosalicylic acid (DNSA) and Seliwanoff’s method, and the organism showing the highest potential was selected for further optimization studies. Results: The optimum culture conditions for inulinase production, by the test fungal culture, were observed when 5% inoculum was added to the minimal medium (pH 5.5) containing 1% inulin/ costus root powder as a carbon source and 0.15% NaNO3/ NH4Cl as a nitrogen source, and incubated at 30°C for 48h under shaker conditions (200 rpm). Maximum enzyme activity was observed at pH level of 5 and temperature level of 45°C, with thermal stability noted between 35°C-55°C. The I/S value of the crude enzyme was calculated to be 0.45 indicating true inulinase activity. It showed no significant inhibition in the presence of metal ions such as Zn+2, Mg+2, and Fe+3. The Ca+2 ions showed partial inhibition whereas Cu+2 ions showed an enhancement in the enzyme activity. Conclusions: These factors may present the test fungal culture isolated in the present study to be a potential candidate for the production of thermo-tolerant and metal resistant inulinase enzyme in order to be used for various biotechnological processes.
从腐烂大蒜样品中分离的一种真菌产菊粉酶的优化
简介:菊粉酶是一种催化菊粉水解的β-果糖水解酶。最近,这种酶得到了很大的重视,主要是因为它能够以菊粉为原料生产高密度果糖浆。在本研究中,从大丽花植物根际土壤和腐烂的大蒜样品中筛选了产菊粉酶的微生物。材料与方法:采用3,5-二硝基水杨酸(DNSA)和Seliwanoff法检测菊粉酶活性,筛选出潜力最大的生物进行进一步优化研究。结果:通过试验真菌培养,在含有1%菊粉/costus根粉作为碳源和0.15%NaNO3/NH4Cl作为氮源的最低培养基(pH 5.5)中加入5%的接种物,并在摇床条件下(200rpm)在30°C下孵育48h,获得了产菊粉酶的最佳培养条件。在pH值为5和温度为45°C时观察到最大酶活性,热稳定性在35°C-55°C之间。计算出粗酶的I/S值为0.45,表明菊粉酶的真实活性。在Zn+2、Mg+2和Fe+3等金属离子存在下,它没有表现出显著的抑制作用。Ca+2离子显示出部分抑制作用,而Cu+2离子则显示出酶活性的增强作用。结论:这些因素可能使本研究中分离的测试真菌培养物成为生产耐热和耐金属菊粉酶的潜在候选者,以便用于各种生物技术工艺。
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来源期刊
Journal of Applied Biotechnology Reports
Journal of Applied Biotechnology Reports Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.90
自引率
0.00%
发文量
0
期刊介绍: The Journal of Applied Biotechnology Reports (JABR) publishes papers describing experimental work relating to all fundamental issues of biotechnology including: Cell Biology, Genetics, Microbiology, Immunology, Molecular Biology, Biochemistry, Embryology, Immunogenetics, Cell and Tissue Culture, Molecular Ecology, Genetic Engineering and Biological Engineering, Bioremediation and Biodegradation, Bioinformatics, Biotechnology Regulations, Pharmacogenomics, Gene Therapy, Plant, Animal, Microbial and Environmental Biotechnology, Nanobiotechnology, Medical Biotechnology, Biosafety, Biosecurity, Bioenergy, Biomass, Biomaterials and Biobased Chemicals and Enzymes. Journal of Applied Biotechnology Reports promotes a special emphasis on: -Improvement methods in biotechnology -Optimization process for high production in fermentor systems -Protein and enzyme engineering -Antibody engineering and monoclonal antibody -Molecular farming -Bioremediation -Immobilizing methods -biocatalysis
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