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Cellulolytic Enzymes Production via Solid-State Fermentation: Effect of Pretreatment Methods on Physicochemical Characteristics of Substrate

机译:固态发酵生产纤维素酶:预处理方法对底物理化特性​​的影响

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摘要

We investigated the effect of pretreatment on the physicochemical characteristics—crystallinity, bed porosity, and volumetric specific surface of soybean hulls and production of cellulolytic enzymes in solid-state fermentation of Trichoderma reesei and Aspergillus oryzae cultures. Mild acid and alkali and steam pretreatments significantly increased crystallinity and bed porosity without significant change inholocellulosic composition of substrate. Crystalline and porous steam-pretreated soybean hulls inoculated with T. reesei culture had 4 filter paper units (FPU)/g-ds, 0.6 IU/g-ds β-glucosidase, and 45 IU/g-ds endocellulase, whereas untreated hulls had 0.75 FPU/g-ds, 0.06 IU/g-ds β-glucosidase, and 7.29 IU/g-ds endocellulase enzyme activities. In A. oryzae steam-pretreated soybean hulls had 47.10 IU/g-ds endocellulase compared to 30.82 IU/g-ds in untreated soybean hulls. Generalized linear statistical model fitted to enzyme activity data showed that effects of physicochemical characteristics on enzymes production were both culture and enzyme specific. The paper shows a correlation between substrate physicochemical properties and enzyme production.
机译:我们研究了预处理对里氏木霉和米曲霉培养物固态发酵中大豆壳的物理化学特性(结晶度,床孔率和体积比表面积以及纤维素分解酶的产生)的影响。温和的酸,碱和蒸汽预处理可显着提高结晶度和床孔率,而不会显着改变基质的纤维素成分。接种里氏木霉培养物的结晶且经蒸汽预处理的多孔大豆壳具有4个滤纸单位(FPU)/g-ds、0.6μIU/g-dsβ-葡萄糖苷酶和45μIU/ g-ds内切纤维素酶,而未经处理的壳具有0.75 FPU / g-ds,0.06 IU / g-dsβ-葡萄糖苷酶和7.29 IU / g-ds内切纤维素酶活性。在米曲霉中,蒸汽预处理的大豆壳的内切酶为47.10 IU / g-ds,而未经处理的大豆壳为30.82 IU / g-ds。拟合酶活性数据的广义线性统计模型表明,理化特性对酶产生的影响既是培养又是酶特异性的。该论文显示了底物理化性质与酶产生之间的相关性。

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