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Effect of different carbon sources on cellulase production by Hypocrea jecorina (Trichoderma reesei) strains

机译:不同碳源对红褐肉座菌(Trichoderma reesei)菌株产生纤维素酶的影响

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摘要

The ascomycete Hypocrea jecorina, an industrial (hemi)cellulase producer, can efficiently degrade plant polysaccharides. At present, the biology underlying cellulase hyperproduction of T. reesei, and the conditions for the enzyme induction, are not completely understood. In the current study, three different strains of T. reesei, including QM6a (wild-type), and mutants QM9414 and RUT-C30, were grown on 7 soluble and 7 insoluble carbon sources, with the later group including 4 pure polysaccharides and 3 lignocelluloses. Time course experiments showed that maximum cellulase activity of QM6a and QM9414 strains, for the majority of tested carbon sources, occurred at 120 hrs, while RUT-C30 had the greatest cellulase activity around 72 hrs. Maximum cellulase production was observed to be 0.035, 0.42 and 0.33 µmol glucose equivalents using microcrystalline celluloses for QM6a, QM9414, and RUTC-30, respectively. Increased cellulase production was positively correlated in QM9414 and negatively correlated in RUT-C30 with ability to grow on microcrystalline cellulose.
机译:工业(半)纤维素酶生产商的子囊菌红景天(Hypocrea jecorina)可以有效降解植物多糖。目前,尚未完全了解里氏木霉纤维素酶高产的生物学基础和酶诱导条件。在当前的研究中,里氏木霉的三种不同菌株,包括QM6a(野生型),突变体QM9414和RUT-C30,在7种可溶和7种不溶碳源上生长,后一组包括4种纯多糖和3种木质纤维素。时程实验表明,对于大多数测试碳源,QM6a和QM9414菌株的最大纤维素酶活性发生在120小时,而RUT-C30在72小时左右具有最大的纤维素酶活性。对于QM6a,QM9414和RUTC-30,使用微晶纤维素观察到的最大纤维素酶产量分别为0.035、0.42和0.33 µmol葡萄糖当量。纤维素酶产量的增加在QM9414中与在微晶纤维素上生长的能力呈正相关,在RUT-C30中呈负相关。

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