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乙酸和糠醛对里氏木霉RUT C30纤维素酶产生的影响。

Effect of acetic acid and furfural on cellulase production of Trichoderma reesei RUT C30.

作者信息

Szengyel Z, Zacchi G

机构信息

Department of Chemical Engineering 1, Lund University, Sweden.

出版信息

Appl Biochem Biotechnol. 2000 Oct;89(1):31-42. doi: 10.1385/abab:89:1:31.

Abstract

Because of the high temperature applied in the steam pretreatment of lignocellulosic materials, different types of inhibiting degradation products of saccharides and lignin, such as acetic acid and furfural, are formed. The main objective of the present study was to examine the effect of acetic acid and furfural on the cellulase production of a filamentous fungus Trichoderma reesei RUT C30, which is known to be one of the best cellulase-producing strains. Mandels's mineral medium, supplemented with steam-pretreated willow as the carbon source at a concentration corresponding to 10 g/L of carbohydrate, was used. Four different concentration levels of acetic acid (0-3.0 g/L) and furfural (0-1.2 g/L) were applied alone as well as in certain combinations. Two enzyme activities, cellulase and beta-glucosidase, were measured. The highest cellulase activity obtained after a 7-d incubation was 1.55 FPU/mL with 1.0 g/L of acetic acid and 0.8 g/L of furfural added to the medium. This was 17% higher than that obtained without acetic acid and furfural. Furthermore, the results showed that acetic acid alone did not influence the cellulase activity even at the highest concentration. However, beta-glucosidase activity was increased with increasing acetic acid concentration. Furfural proved to be an inhibiting agent causing a significant decrease in both cellulase and beta-glucosidase production.

摘要

由于木质纤维素材料蒸汽预处理中所施加的高温,会形成不同类型的糖类和木质素降解抑制产物,如乙酸和糠醛。本研究的主要目的是考察乙酸和糠醛对丝状真菌里氏木霉RUT C30纤维素酶产生的影响,该菌株是已知的最佳纤维素酶生产菌株之一。使用了曼德尔氏矿物培养基,添加经蒸汽预处理的柳树作为碳源,其浓度相当于10 g/L碳水化合物。单独以及以某些组合形式应用了四种不同浓度水平的乙酸(0 - 3.0 g/L)和糠醛(0 - 1.2 g/L)。测定了两种酶活性,即纤维素酶和β - 葡萄糖苷酶。在培养基中添加1.0 g/L乙酸和0.8 g/L糠醛,经7天培养后获得的最高纤维素酶活性为1.55 FPU/mL。这比不添加乙酸和糠醛时获得的活性高17%。此外,结果表明,即使在最高浓度下,单独的乙酸也不影响纤维素酶活性。然而,β - 葡萄糖苷酶活性随乙酸浓度的增加而增加。事实证明,糠醛是一种抑制剂,会导致纤维素酶和β - 葡萄糖苷酶的产生均显著下降。

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