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利用固态发酵用农业工业残留物生产的淀粉酶的催化特性。

Catalytic Properties of Amylolytic Enzymes Produced by Using Agroindustrial Residues on Solid-State Fermentation.

机构信息

Laboratory of Enzymology and Fermentation Processes, Faculty of Biological and Environmental Sciences, Federal University of Grande Dourados (FCBA/UFGD), Dourados, MS, Brazil.

Laboratory of Bioengineering, Faculty of Biological and Environmental Sciences, Federal University of Grande Dourados (FCBA/UFGD), Dourados, MS, Brazil.

出版信息

Biomed Res Int. 2017;2017:7507523. doi: 10.1155/2017/7507523. Epub 2017 Dec 10.

Abstract

Amylases catalyze the hydrolysis of starch, a vegetable polysaccharide abundant in nature. These enzymes can be utilized in the production of syrups, alcohol, detergent, pharmaceutical products, and animal feed formulations. The aim of this study was to optimize the production of amylases by the filamentous fungus by solid-state fermentation and to evaluate the catalytic properties of the obtained enzymatic extract. The highest amylase production, 63.25 U g (or 6.32 U mL), was obtained by culturing the fungus in wheat bran with 55% of initial moisture, cultivated for 96 h at 25°C. The enzyme presented optimum activity at pH 5.0 and 55°C. The amylase produced was stable in a wide pH range (3.5-9.5) and maintained its catalytic activity for 1 h at 40°C. Furthermore, the enzymatic extract hydrolyzed starches from different vegetable sources, presenting predominant dextrinizing activity for all substrates evaluated. However, the presence of glucose was observed in a higher concentration during hydrolysis of corn starch, indicating the synergistic action of endo- and exoamylases, which enables the application of this enzymatic extract to produce syrups from different starch sources.

摘要

淀粉酶催化淀粉水解,淀粉是自然界中丰富的植物多糖。这些酶可用于生产糖浆、酒精、洗涤剂、医药产品和动物饲料配方。本研究旨在通过固态发酵优化丝状真菌 的淀粉酶生产,并评估所得酶提取物的催化特性。通过在初始水分含量为 55%的麦麸中培养真菌,在 25°C 下培养 96 小时,可获得最高的淀粉酶产量 63.25 U/g(或 6.32 U/mL)。该酶在 pH5.0 和 55°C 时具有最佳活性。所产生的淀粉酶在宽 pH 范围(3.5-9.5)内稳定,并在 40°C 下保持 1 小时的催化活性。此外,酶提取物可水解来自不同植物来源的淀粉,对所有评估的底物均表现出主要的糖化活性。然而,在玉米淀粉水解过程中观察到葡萄糖浓度较高,表明内切和外切淀粉酶的协同作用,这使得该酶提取物可用于从不同淀粉源生产糖浆。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9320/5742443/0be50fba8823/BMRI2017-7507523.001.jpg

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