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Novel Aspergillus Hemicellulases Enhance Performance of Commercial Cellulases in Lignocellulose Hydrolysis

机译:新型曲霉半纤维素酶增强木质纤维素水解中商业纤维素酶的性能

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A novel hemicellulase-producing fungal strain was isolated from a local soil sample. The organism is identified as Aspergillus fumigatus based on ribosomal RNA analyses. The Aspergillus strain, designated as 2NB, produces both enzymes acting on xylan backbone (xylanase and fi-xylosidase), and those acting on side chains (or accessory enzymes) notably α-arabinofuranosidase and acetyl-xylan esterase. The Asperigillus hemicellulases are characterized as having relatively low xylanase and β-xylosidase activities but high side chain removal activities. The activity ratio of side-chain acting enzymes to xylanase is higher than that of the Multifect enzyme, a commercial hemicellulase product. The potential of the novel hemicellulases in lignocelluloses bioprocessing was demonstrated with alkaline-pretreated switchgrass as lignocellulose substrate with hemicellulase supplemented with a ratio of xylanase activity to filter paper unit of 2:1. Supplement of Aspergillus hemicellulases to commercial celluloses significantly enhanced the hydrolysis of lignocellulose, achieving a 94% hydrolysis yield based on reducing sugar measurement, compared to 60% when no hemicellulase or 75% when Multifect enzyme was used under otherwise identical conditions. The significant improvement resulting from supplementing a hemicellulase mix with high side-chain removal activities suggests the importance of accessory hemicellulases in lignocellulose processing.
机译:从当地土壤样品中分离出新的产生半纤维素酶的真菌菌株。根据核糖体RNA分析,该生物被鉴定为烟曲霉。命名为2NB的曲霉菌株既产生作用于木聚糖主链的酶(木聚糖酶和纤维木糖苷酶),又产生作用于侧链的酶(或辅助酶),尤其是α-阿拉伯呋喃糖苷酶和乙酰基木聚糖酯酶。半曲霉半纤维素酶的特征在于具有较低的木聚糖酶和β-木糖苷酶活性,但是具有较高的侧链去除活性。侧链作用酶对木聚糖酶的活性比高于商业化半纤维素酶产品Multifect酶的活性比。用碱性预处理的柳枝as作为木质纤维素底物,并用半纤维素酶补充木聚糖酶活性与滤纸单位之比为2:1,证明了新型半纤维素酶在木质纤维素生物加工中的潜力。在商业纤维素中补充半曲霉半纤维素酶可显着增强木质纤维素的水解,基于降低的糖度测量,可实现94%的水解产率,而在相同条件下不使用半纤维素酶时为60%,在使用Multifect酶时为75%。通过向半纤维素酶混合物补充高侧链去除活性而产生的显着改善表明,在木质纤维素加工过程中,辅助半纤维素酶的重要性。

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