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Enhanced cellulase production of the Trichoderma viride mutated by microwave and ultraviolet.

机译:通过微波和紫外线诱变的木霉绿色纤维素的纤维素酶生产增强。

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Cellulase-producing fungi Trichoderma viride were cultured and fermented on the solid-state wheat bran fermentation medium. The characteristics of its carboxymethyl cellulase (CMCase) in the condition of this solid-state fermentation were evaluated, and the optimum culture time, optimum pH and optimum temperature for CMCase activity of T. viride fermented in this solid state were 60h, 5.0 and 50 degrees C, respectively. Carboxymethyl cellulose sodium (CMC-Na) and Congo red were used to screen the strains that had stronger ability to produce enzymes. After the compound mutagenesis by microwave and ultraviolet, seven mutant strains (M-B1-M-B7) were selected and their CMCase activities were assayed. Five of them (M-B1, M-B2, M-B3, M-B5 and M-B7) had significantly stronger ability to produce enzymes than the normal wild type, and they were also very stable for a long period up to 9 generations to produce cellulase. Molecular studies showed that there were some base mutations in endoglucanase I (EG I) genes of mutants M-B1, M-B2, M-B3 and M-B5, but no change in M-B7, suggesting that some amino mutations in EG I proteins caused by base mutations could lead to enhanced cellulase production
机译:在固态麦麸发酵培养基上培养产生纤维素酶的真菌木霉属木霉。评价了其在固态发酵条件下的羧甲基纤维素酶(CMCase)的特性,并且在该固态发酵的维尔纽斯氏菌的CMCase活性的最佳培养时间,最佳pH和最佳温度分别为60h,5.0和50。摄氏度。羧甲基纤维素钠(CMC-Na)和刚果红用于筛选具有较强酶产生能力的菌株。通过微波和紫外线诱变后,选择了7个突变菌株(M-B1-M-B7),并对其CMCase活性进行了测定。它们中的五个(M-B1,M-B2,M-B3,M-B5和M-B7)比正常的野生型具有显着更强的酶产生能力,并且它们在长达9个的时间内也非常稳定世代产生纤维素酶。分子研究表明,突变体M-B1,M-B2,M-B3和M-B5的内切葡聚糖酶I(EG I)基因中存在一些碱基突变,但M-B7没有变化,表明EG中有一些氨基突变由碱基突变引起的I蛋白可能导致纤维素酶生产增强

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