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The Change in the Composition of Trichoderma reesei Carbohydrases Complex as a Result of Gamma Mutagenesis

机译:里氏木霉糖酶复合物组成的变化作为γ诱变的结果

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摘要

The filamentous fungus Trichoderma reesei is traditionally used as the main industrial producer of cellulases and hemicellulases. Recently, the relevance of carbohydrases hydrolyzing nonstarch polysaccharides of cereals has significantly increased in feed production. In processing of grain raw materials, endodepolymerases, mainly xylanases and endoglucanases, play a key role. Earlier, we carried out gamma mutagenesis of an industrial strain T. reesei BCM18.2/KK to increase the proportion of endodepolymerases in its enzyme complex. Endoglucanase activity of the strain was increased 5-fold, while xylanase activity increased more than 8-fold. It was interesting to determine the carbohydrases composition in enzyme preparations obtained from the original and mutant T. reesei strains. So, the strains were cultured in laboratory fermenters; concentrated preparations were obtained using freeze dryer. It was established that gamma mutagenesis resulted in significant changes in the carbohydrases complex of the strain. Cellobiohydrolase I being the major carbohydrase in the original strain was absent in the enzyme complex of the mutant. The share of xylanases and endoglucanases in the preparation from the mutant strain increased by 6% and 6.5%, respectively, compared with the preparation from the original strain. The obtained data show the ability of gamma irradiation to affect the component composition of T. reesei carbohydrase complex.
机译:丝状真菌里氏木霉传统上被用作纤维素酶和半纤维素酶的主要工业生产者。最近,水解谷物的非淀粉多糖的碳水化合物酶的相关性在饲料生产中已显着增加。在谷物原料加工中,内切聚合酶(主要是木聚糖酶和内切葡聚糖酶)起关键作用。之前,我们对工业菌株里氏木霉BCM18.2 / KK进行了伽马诱变,以增加内切聚合酶在其酶复合物中的比例。该菌株的内切葡聚糖酶活性增加了5倍,而木聚糖酶活性增加了8倍以上。确定从原始和突变里氏木霉菌株获得的酶制剂中的碳水化合物酶组成是有趣的。因此,菌株在实验室发酵罐中培养。使用冷冻干燥机获得浓缩的制剂。已确定,γ诱变会导致该菌株的糖酶复合物发生重大变化。突变菌株的酶复合物中不存在纤维二糖水解酶I,它是原始菌株中的主要糖化酶。与来自原始菌株的制剂相比,来自突变菌株的制剂中的木聚糖酶和内切葡聚糖酶的份额分别增加了6%和6.5%。所获得的数据显示了伽马辐射影响里氏木霉糖酶复合物的成分组成的能力。

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