嗜热细菌黄热无氧杆菌TWXYL3产生的耐热和可碱性木聚糖酶。

ISRN Microbiology Pub Date : 2012-09-05 Print Date: 2012-01-01 DOI:10.5402/2012/517524
Joshua T Ellis, Timothy S Magnuson
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引用次数: 33

摘要

随着化石能源成本的上升和供应的有限,发展清洁、高效和可再生的国内能源的经济动力越来越强。微生物的活动提供了将木质纤维素材料转化为可发酵糖的潜力,可用于下游发酵过程。菌株TWXYL3是一种在美国俄勒冈州Alvord盆地热液系统中发现的嗜热兼性厌氧菌。菌株TWXYL3的系统发育分析表明,该菌株与黄热无氧杆菌WL (FJ950739)的16S rRNA基因相似性达99%。a . flavithermus TWXYL3可以在生长培养基中分泌大量的多亚基耐热木聚糖酶复合物。木聚糖酶的诱导是通过在选择性含木聚糖的培养基中重悬来实现的。胞外木聚糖酶活性在65°C温度下表现最佳,在85°C温度下保持热稳定性。胞外木聚糖酶活性表现为双峰pH最优,在pH 6和pH 8时达到最大值。细胞外木聚糖酶的电泳分析显示有5种不同的蛋白具有木聚糖酶活性。菌株TWXYL3是从Alvord盆地热液系统中获得的第一个木聚糖水解分离物,代表了木质纤维素转化为生物燃料前体过程开发的新模式系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermostable and Alkalistable Xylanases Produced by the Thermophilic Bacterium Anoxybacillus flavithermus TWXYL3.

Thermostable and Alkalistable Xylanases Produced by the Thermophilic Bacterium Anoxybacillus flavithermus TWXYL3.

Thermostable and Alkalistable Xylanases Produced by the Thermophilic Bacterium Anoxybacillus flavithermus TWXYL3.

Thermostable and Alkalistable Xylanases Produced by the Thermophilic Bacterium Anoxybacillus flavithermus TWXYL3.

With the rising cost and finite supply of fossil energy, there is an increasing economic incentive for the development of clean, efficient, and renewable domestic energy. The activities of microorganisms offer the potential conversion of lignocellulosic materials into fermentable sugars, usable for downstream fermentation processes. Strain TWXYL3, a thermophilic facultative anaerobe, was discovered in the Alvord Basin hydrothermal system in Oregon, USA. Phylogenetic analysis of strain TWXYL3 showed it to be 99% similar to the 16S rRNA gene of Anoxybacillus flavithermus WL (FJ950739). A. flavithermus TWXYL3 was shown to secrete a large multisubunit thermostable xylanase complex into the growth medium. Xylanase induction was achieved by resuspending the isolate in a selective xylan-containing medium. Extracellular xylanase activity showed a temperature optimum of 65°C and retained thermostability up to 85°C. Extracellular xylanase activity showed a bimodal pH optimum, with maxima at pH 6 and pH 8. Electrophoretic analysis of the extracellular xylanase shows 5 distinct proteins with xylanase activity. Strain TWXYL3 is the first xylanolytic isolate obtained from the Alvord Basin hydrothermal system and represents a new model system for development of processes where lignocellulosics are converted to biofuel precursors.

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