首页> 外文OA文献 >Produção de enzimas por fungos em fermentação semi-sólida utilizando bagaço de coco e pedúnculo de caju como substratos
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Produção de enzimas por fungos em fermentação semi-sólida utilizando bagaço de coco e pedúnculo de caju como substratos

机译:以椰子渣和腰果茎为底物的半固态发酵中的真菌生产酶

摘要

The production of enzymes by microorganisms using organic residues is important and it can be associated with several applications such as food and chemical industries and so on. The objective of this work is the production of CMCase, Xylanase, Avicelase and FPase enzymes by solid state fermentation (SSF) using as substrates: bagasse of coconut and dried cashew stem. The microorganisms employed are Penicillium chrysogenum and an isolated fungus from the coconut bark (Aspergillus fumigatus). Through the factorial design methodology and response surface analysis it was possible to study the influence of the humidity and pH. For Penicillium chrysogenum and the isolated fungus, the coconut bagasse was used as culture medium. In another fermentation, it was used the mixture of coconut bagasse and cashew stem. Fermentations were conducted using only the coconut bagasse as substrate in cultures with Penicillium chrysogenum fungus and the isolated one. A mixture with 50% of coconut and 50% of cashew stem was employed only for Penicillium chrysogenum fungus, the cultivation conditions were: 120 hours at 30 °C in BOD, changing humidity and pH values. In order to check the influence of the variables: humidity and pH, a 22factorial experimental design was developed, and then two factors with two levels for each factor and three repetitions at the central point. The levels of the independent variables used in ascending order (-1, 0, +1), to humidity, 66%, 70.5% and 75% and pH 3, 5 and 7, respectively. The software STATISTICATM(version 7.0, StatSoft, Inc.) was used to calculate the main effects of the variables and their interactions. The response surface methodology was used to optimize the conditions of the SSF. A chemical and a physic-chemical characterization of the coconut bagasse have determined the composition of cellulose (%) = 39.09; Hemicellulose (%) = 23.80, Total Lignin (%) = 36.22 and Pectin (%) = 1.64. To the characterization of cashew stem, the values were cellulose (g) = 15.91 Hemicellulose (%) = 16.77, Total Lignin (%) = 30.04 and Pectin (%) = 15.24. The results indicate the potential of the materials as substrate for semisolid fermentation enzyme production. The two microorganisms used are presented as good producers of cellulases. The results showed the potential of the fungus in the production of CMCase enzyme, with a maximum of 0.282 UI/mL and the Avicelase enzyme the maximum value ranged from 0.018 to 0.020 UI/ mL, using only coconut bagasse as substrate. The Penicillium chrysogenum fungus has showed the best results for CMCase = 0.294 UI/mL, FPase = 0.058 UI/mL, Avicelase = 0.010 UI/mL and Xylanase = 0.644 UI/ mL enzyme, using coconut bagasse and cashew stem as substrates. The Penicllium chrysogenumfungus showed enzymatic activities using only the coconut as substrate for CMCase = 0.233 UI/mL, FPase = 0.031 to 0.032 UI/ mL, Avicelase = 0.018 to 0.020 UI/mL and Xylanase = 0.735 UI/ mL. Thus, it can be concluded that the used organisms and substrates have offered potential for enzyme production processes in a semi-solid cultivation
机译:微生物利用有机残基生产酶很重要,并且可以与食品和化学工业等多种应用相关。这项工作的目的是通过固态发酵(SSF),以椰子蔗渣和干腰果茎为底物,通过固态发酵(SSF)来生产CMCase,木聚糖酶,Avicelase和FPase酶。使用的微生物是产黄青霉和从椰子树皮(烟曲霉)分离的真菌。通过析因设计方法和响应面分析,可以研究湿度和pH值的影响。对于产黄青霉和分离的真菌,将椰子蔗渣用作培养基。在另一发酵中,使用了椰子蔗渣和腰果茎的混合物。仅在以青霉青霉菌和分离的青霉菌为培养基的培养物中使用椰子蔗渣作为底物进行发酵。仅将含有50%椰子和50%腰果茎的混合物用于产黄青霉菌,培养条件为:在30°C的BOD中120小时,改变湿度和pH值。为了检查变量(湿度和pH)的影响,开发了22个因子试验设计,然后设计了两个因子,每个因子具有两个水平,并且在中心点重复三个。自变量以升序(-1、0,+ 1)的级别分别相对于湿度分别为66%,70.5%和75%,pH值为3、5和7。 STATISTICATM软件(7.0版,StatSoft,Inc.)用于计算变量及其相互作用的主要影响。响应面方法用于优化SSF的条件。椰子蔗渣的化学和物理化学特性确定了纤维素的组成(%)= 39.09;半纤维素(%)= 23.80,总木质素(%)= 36.22和果胶(%)= 1.64。为了表征腰果茎,其值是纤维素(g)= 15.91半纤维素(%)= 16.77,总木质素(%)= 30.04和果胶(%)= 15.24。结果表明该材料作为生产半固体发酵酶的底物的潜力。所使用的两种微生物是纤维素酶的良好生产者。结果表明,仅使用椰子蔗渣作为底物,该真菌在CMCase酶生产中具有潜力,最大值为0.282 UI / mL,Avicelase酶的最大值为0.018至0.020 UI / mL。以椰子蔗渣和腰果茎为底物,CMCase = 0.294 UI / mL,FPase = 0.058 UI / mL,Avicelase = 0.010 UI / mL和木聚糖酶= 0.644 UI / mL酶时,产黄青霉菌表现出最好的结果。仅使用椰子作为底物,产黄青霉菌显示酶活性,CMCase = 0.233 UI / mL,FPase = 0.031至0.032 UI / mL,Avicelase = 0.018至0.020 UI / mL,木聚糖酶= 0.735 UI / mL。因此,可以得出结论,所用的生物和底物为半固态栽培中的酶生产过程提供了潜力。

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