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Optimization of laccase production from Trametes versicolor by solid fermentation

机译:固相发酵优化云芝Trametes漆酶生产

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摘要

The regulation of culture conditions, especially the optimization of substrate constituents, is crucial for laccase production by solid fermentation. To develop an inexpensive optimized substrate formulation to produce high-activity laccase, a uniform design formulation experiment was devised. The solid fermentation of Trametes versicolor was performed with natural aeration, natural substrate pH (about 6.5), environmental humidity of 60% and two different temperature stages (at 37 °C for 3 days, and then at 30 °C for the next 17 days). From the experiment, a regression equation for laccase activity, in the form of a second-degree polynomial model, was constructed using multivariate regression analysis and solved with unconstrained optimization programming. The optimized substrate formulation for laccase production was then calculated. Tween 80 was found to have a negative effect on laccase production in solid fermentation; the optimized solid substrate formulation was 10.8% glucose, 27.7% wheat bran, 9.0% (NH4)2SO4, and 52.5% water. In a scaled-up verification of solid fermentation at a 10 kg scale, laccase activity from T. versicolor in the optimized substrate formulation reached 110.9 IU/g of dry mass.
机译:培养条件的调节,尤其是底物成分的优化,对于通过固体发酵生产漆酶至关重要。为了开发廉价的优化底物配方以生产高活性漆酶,设计了统一的设计配方实验。在自然通风,自然底物pH(约6.5),环境湿度60%和两个不同的温度阶段(37°C下持续3天,然后在30°C下进行接下来的17天)进行Trametes versicolor的固态发酵)。从实验中,使用多元回归分析构建了二次多项式模型形式的漆酶活性回归方程,并使用无约束优化程序对其进行了求解。然后计算出用于漆酶生产的最佳底物配方。发现吐温80对固体发酵中漆酶的产生有负面影响;优化的固体底物配方为10.8%葡萄糖,27.7%麦麸,9.0%(NH4)2SO4和52.5%的水。在以10千克规模进行的固体发酵的放大验证中,优化底物配方中来自杂色丁香的漆酶活性达到110.9 IU / g干重。

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