首页> 美国卫生研究院文献>Frontiers in Bioengineering and Biotechnology >Highly Thermostable Xylanase Production from A Thermophilic Geobacillus sp. Strain WSUCF1 Utilizing Lignocellulosic Biomass
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Highly Thermostable Xylanase Production from A Thermophilic Geobacillus sp. Strain WSUCF1 Utilizing Lignocellulosic Biomass

机译:从嗜热的地芽孢杆菌产生高度热稳定的木聚糖酶。利用木质纤维素生物质的WSUCF1菌株

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摘要

Efficient enzymatic hydrolysis of lignocellulose to fermentable sugars requires a complete repertoire of biomass deconstruction enzymes. Hemicellulases play an important role in hydrolyzing hemicellulose component of lignocellulose to xylooligosaccharides and xylose. Thermostable xylanases have been a focus of attention as industrially important enzymes due to their long shelf life at high temperatures. Geobacillus sp. strain WSUCF1 produced thermostable xylanase activity (crude xylanase cocktail) when grown on xylan or various inexpensive untreated and pretreated lignocellulosic biomasses such as prairie cord grass and corn stover. The optimum pH and temperature for the crude xylanase cocktail were 6.5 and 70°C, respectively. The WSUCF1 crude xylanase was found to be highly thermostable with half-lives of 18 and 12 days at 60 and 70°C, respectively. At 70°C, rates of xylan hydrolysis were also found to be better with the WSUCF1 secretome than those with commercial enzymes, i.e., for WSUCF1 crude xylanase, Cellic-HTec2, and AccelleraseXY, the percent xylan conversions were 68.9, 49.4, and 28.92, respectively. To the best of our knowledge, WSUCF1 crude xylanase cocktail is among the most thermostable xylanases produced by thermophilic Geobacillus spp. and other thermophilic microbes (optimum growth temperature ≤70°C). High thermostability, activity over wide range of temperatures, and better xylan hydrolysis than commercial enzymes make WSUCF1 crude xylanase suitable for thermophilic lignocellulose bioconversion processes.
机译:将木质纤维素有效地酶水解为可发酵糖需要完整的生物质解构酶库。半纤维素酶在将木质纤维素的半纤维素成分水解为木寡糖和木糖中起重要作用。由于其在高温下的长寿命,热稳定的木聚糖酶作为工业上重要的酶已成为关注的焦点。芽孢杆菌WSUCF1菌株在木聚糖或各种廉价的未经处理和预处理的木质纤维素生物质(如草原草和玉米秸秆)上生长时,产生热稳定的木聚糖酶活性(粗木聚糖酶混合物)。粗木聚糖酶混合物的最佳pH和温度分别为6.5和70°C。发现WSUCF1粗木聚糖酶在60°C和70°C的温度下具有极高的热稳定性,半衰期分别为18天和12天。在70°C时,发现WSUCF1分泌组的木聚糖水解率也比市售酶高,即WSUCF1粗木聚糖酶,Cellic-HTec2和AccelleraseXY的木聚糖转化率分别为68.9、49.4和28.92。 , 分别。据我们所知,WSUCF1粗木聚糖酶混合物是嗜热芽孢杆菌属菌株产生的最热稳定的木聚糖酶。以及其他嗜热微生物(最佳生长温度≤70°C)。 WSUCF1粗木聚糖酶具有较高的热稳定性,在较宽的温度范围内具有活性,并具有比商业酶更好的木聚糖水解性能,因此适用于嗜热木质纤维素生物转化工艺。

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