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比较 GH 家族 10 和 11 中的两种耐热木聚糖酶与耐热纤维素酶在木质纤维素水解中的协同作用。

Comparison of the synergistic action of two thermostable xylanases from GH families 10 and 11 with thermostable cellulases in lignocellulose hydrolysis.

机构信息

College of Forestry, Northwest A&F University, 3 Taicheng Road, Yangling 712100, China.

出版信息

Bioresour Technol. 2011 Oct;102(19):9090-5. doi: 10.1016/j.biortech.2011.06.085. Epub 2011 Jun 30.

Abstract

Recombinant xylanase preparations from Nonomuraea flexuosa (Nf Xyn, GH11) and Thermoascus aurantiacus (Ta Xyn, GH10) were evaluated for their abilities to hydrolyze hydrothermally pretreated wheat straw. The GH family 10 enzyme Ta Xyn was clearly more efficient in solubilizing xylan from pretreated wheat straw. Improvement of the hydrolysis of hydrothermally pretreated wheat straw by addition of the thermostable xylanase preparations to thermostable cellulases was evaluated. Clear synergistic enhancement of hydrolysis of cellulose was observed when cellulases were supplemented even with a low amount of pure xylanases. Xylobiose was the main hydrolysis product from xylan. It was found that the hydrolysis of cellulose increased nearly linearly with xylan removal during the enzymatic hydrolysis. The results also showed that the xylanase preparation from T. aurantiacus, belonging to GH family 10 always showed better hydrolytic capacity of solubilizing xylan and acting synergistically with thermostable cellulases in the hydrolysis of hydrothermally pretreated wheat straw.

摘要

从 Nonomuraea flexuosa(Nf Xyn,GH11)和 Thermoascus aurantiacus(Ta Xyn,GH10)中提取的重组木聚糖酶制剂,用于评估其水解水热预处理小麦秸秆的能力。GH10 家族酶 Ta Xyn 明显更有效地从预处理的小麦秸秆中溶解木聚糖。通过向热稳定纤维素酶中添加热稳定木聚糖酶制剂来评估对水热预处理的小麦秸秆水解的改善。即使添加少量纯木聚糖酶,也可以明显增强纤维素的水解协同作用。木二糖是木聚糖的主要水解产物。结果还表明,在酶解过程中,随着木聚糖的去除,纤维素的水解几乎呈线性增加。结果还表明,属于 GH10 家族的 T. aurantiacus 的木聚糖酶制剂在水热预处理的小麦秸秆的水解中,始终表现出更好的溶解木聚糖的水解能力,并与热稳定纤维素酶表现出协同作用。

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