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Optimization of lignocellulolytic enzyme production by the white-rot fungus Trametes trogii in solid-state fermentation using response surface methodology

机译:响应面分析法优化白腐真菌Trametes trogii在固态发酵中木质纤维素酶的生产

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摘要

The white-rot basidiomicete Trametes trogii (MYA 28-11) is an outstanding producer of laccase. A Doehlert experimental design was applied to optimize its lignocellulolytic enzyme production in solid-state fermentation. The impact on enzyme production of three quantitative variables, namely pH, copper and nitrogen concentrations, was investigated by using a wood-based solid medium supplemented with malt extract. Optimization was aimed at simultaneously minimizing cellulase activity and maximizing ligninolytic enzyme production. Such conditions were: pH 4.5, peptone 12.5gl~(-1), and CuSO4 11 mM. Highest activities achieved were: laccase 901 and Mn-peroxidase 20Ug~(-1). There was not a direct correlation between the levels of enzymatic activities and the extent of losses of wood weight or components. The factorial approach also allowed us to quantify the enzyme activity in any part of the experimental domain, consequently, it was also possible to determine a culture medium to obtain crude extracellular extracts with high laccase (510Ug~(-1)) and endoxylanase (780 Ug~(-1)) yields. These enzymes have gained renewed interest mainly due to their applications in paper industries for pulp treatment, improving the effectiveness of conventional bleaching. Considering the results obtained, T. trogii could be an attractive source of both enzymes.
机译:白腐担子菌Trametes trogii(MYA 28-11)是漆酶的杰出生产商。采用Doehlert实验设计来优化其在固态发酵中木质纤维素分解酶的产量。通过使用补充了麦芽提取物的木质固体培养基,研究了三个定量变量(即pH,铜和氮的浓度)对酶产生的影响。优化旨在同时最小化纤维素酶活性和最大化木质素分解酶的产量。这些条件是:pH 4.5,蛋白ept 12.5gl(-1)和CuSO4 11 mM。获得的最高活性是:漆酶901和Mn-过氧化物酶20Ug〜(-1)。酶活性水平与木材重量或组分损失程度之间没有直接关系。阶乘方法还使我们能够量化实验域中任何部分的酶活性,因此,也有可能确定一种培养基,以获得具有高漆酶(510Ug〜(-1))和内切木聚糖酶(780)的粗制细胞外提取物。 Ug〜(-1))得。这些酶引起了人们的新兴趣,主要是因为它们在造纸工业中用于纸浆处理,提高了常规漂白的效率。考虑到获得的结果,T。trogii可能是两种酶的诱人来源。

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