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Production of xylooligosaccharides from enzymatic hydrolysis of xylan by white-rot fungi Pleurotus

机译:由白腐真菌侧耳属酶水解木聚糖产生木寡糖

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摘要

Hemicellulose consists of non-cellulosic polysaccharides, with xylans and mannans as their main examples. In nature, xylan can be first degraded to xylooligosaccharides and finally to xylose by certain microorganisms. White-rot fungi basidiomycetes Pleurotus sp. BCCB068 and Pleurotus tailandia were used to degrade oat-spelts xylan under submerged fermentation for a period of 40 days. The study obtained activities of endo-1,4-beta-xylanase and beta-xylosidase and determination of xylan products by degradation. The fungi reached significant levels of xylan degradation by Pleurotus sp. BCCB068 (75.1%) and P. tailandia (73.4%), following formations of xylooligosaccharides and sugar monomers. These Pleurotus strains proved to be a feasible alternative for biotechnological processes related to degradation of hemicellulose sources. Key words: biodegradation, Pleurotus, xylan, hemicellulose, xylooligosaccharides.
机译:半纤维素由非纤维素多糖组成,以木聚糖和甘露聚糖为主要实例。在自然界中,木聚糖可以首先被某些微生物降解为木寡糖,最后被降解为木糖。白腐真菌担子菌侧耳属。 BCCB068和侧耳侧耳在水下发酵中降解降解了燕麦的木聚糖40天。该研究获得了1,4-β-木聚糖内切酶和β-木糖苷酶的活性,并通过降解测定了木聚糖产物。该菌通过侧耳属菌达到了明显的木聚糖降解水平。在形成木寡糖和糖单体后,BCCB068(75.1%)和P. tailandia(73.4%)。这些杏鲍菇菌株被证明是与半纤维素来源降解有关的生物技术过程的可行替代品。关键词:生物降解,侧耳,木聚糖,半纤维素,木寡糖。

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