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哈茨木霉 IOC-4038:从甘蔗渣纤维素木质素生产具有显著β-葡萄糖苷酶活性的纤维素复合酶的有前途的菌株。

Trichoderma harzianum IOC-4038: A promising strain for the production of a cellulolytic complex with significant β-glucosidase activity from sugarcane bagasse cellulignin.

机构信息

Research and Development Center, PETROBRAS, Ilha do Fundão, Rio de Janeiro, Brazil.

出版信息

Appl Biochem Biotechnol. 2010 Nov;162(7):2111-22. doi: 10.1007/s12010-010-8986-0. Epub 2010 May 9.

DOI:10.1007/s12010-010-8986-0
PMID:20455032
Abstract

Sugarcane bagasse is an agroindustrial residue generated in large amounts in Brazil. This biomass can be used for the production of cellulases, aiming at their use in second-generation processes for bioethanol production. Therefore, this work reports the ability of a fungal strain, Trichoderma harzianum IOC-4038, to produce cellulases on a novel material, xylan free and cellulose rich, generated from sugarcane bagasse, named partially delignified cellulignin. The extract produced by T. harzianum under submerged conditions reached 745, 97, and 559 U L(-1) of β-glucosidase, FPase, and endoglucanase activities, respectively. The partial characterization of this enzyme complex indicated, using a dual analysis, that the optimal pH values for the biocatalysis ranged from 4.9 to 5.2 and optimal temperatures were between 47 and 54 °C, depending on the activity studied. Thermal stability analyses revealed no significant decrease in activity at 37 °C during 23 h of incubation. When compared to model strains, Aspergillus niger ATCC-16404 and Trichoderma reesei RutC30, T. harzianum fermentation was faster and its extract showed a better balanced enzyme complex, with adequate characteristics for its application in simultaneous saccharification and fermentation processes.

摘要

甘蔗渣是巴西大量产生的农业工业残余物。这种生物质可以用于生产纤维素酶,旨在将其用于第二代生物乙醇生产过程。因此,这项工作报道了真菌菌株哈茨木霉 IOC-4038 在新型材料上生产纤维素酶的能力,这种新型材料是从甘蔗渣中产生的,名为部分脱木质素的纤维素木质素,它不含木聚糖且富含纤维素。哈茨木霉在液体深层培养条件下产生的提取物分别达到了 745、97 和 559 U L(-1)的β-葡萄糖苷酶、纤维二糖水解酶和内切葡聚糖酶活性。该酶复合物的部分特性表明,使用双分析,生物催化的最佳 pH 值范围为 4.9 至 5.2,最佳温度在 47 至 54°C 之间,具体取决于所研究的活性。热稳定性分析表明,在 37°C 孵育 23 小时期间,活性没有明显下降。与模型菌株黑曲霉 ATCC-16404 和里氏木霉 RutC30 相比,哈茨木霉的发酵速度更快,其提取物显示出更好的平衡酶复合物,具有足够的特性,适用于同步糖化和发酵过程。

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