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Degradative actions of microbial xylanolytic activities on hemicelluloses from rhizome of Arundo donax

机译:微生物木聚糖分解活性对中华绒螯蟹根茎半纤维素的降解作用

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摘要

Polysaccharidases from extremophiles are remarkable for specific action, resistance to different reaction conditions and other biotechnologically interesting features. In this article the action of crude extracts of thermophilic microorganisms (Thermotoga neapolitana, Geobacillus thermantarcticus and Thermoanaerobacterium thermostercoris) is studied using as substrate hemicellulose from one of the most interesting biomass crops, the giant reed (Arundo donax L.). This biomass can be cultivated without competition and a huge amount of rhizomes remains in the soil at the end of cropping cycle (10–15 years) representing a further source of useful molecules. Optimization of the procedure for preparation of the hemicellulose fraction from rhizomes of Arundo donax, is studied. Polysaccharidases from crude extracts of thermophilic microorganisms revealed to be suitable for total degradative action and/or production of small useful oligosaccharides from hemicelluloses from A. donax. Xylobiose and interesting tetra- and pentasaccharide are obtained by enzymatic action in different conditions. Convenient amount of raw material was processed per mg of crude enzymes. Raw hemicelluloses and pretreated material show antioxidant activity unlike isolated tetra- and pentasaccharide. The body of results suggest that rhizomes represent a useful raw material for the production of valuable industrial products, thus allowing to increase the economic efficiency of A. donax cultivation.
机译:来自极端微生物的多糖酶在特定作用,对不同反应条件的抵抗力和其他生物技术上令人感兴趣的特征方面是显着的。本文以嗜热微生物粗提物(Thermotoga neapolitana,Gerbacillus thermantarcticus和Thermoanaerobacterium thermostercoris)的粗提物的作用为研究对象,使用最有趣的一种生物量农作物-芦苇(Arundo donax L.)作为半纤维素。这种生物质可以在没有竞争的情况下进行耕种,并且在种植周期结束时(10-15年),大量的根茎残留在土壤中,这代表了有用分子的进一步来源。研究了从Arundo donax的根茎制备半纤维素部分的程序的优化。从嗜热微生物的粗提取物中提取的多糖酶显示出适合于总降解作用和/或由拟南芥的半纤维素产生小的有用的低聚糖。木糖和有趣的四糖和五糖通过在不同条件下的酶促作用而获得。每毫克粗酶处理方便量的原料。与分离的四糖和五糖不同,未加工的半纤维素和预处理的材料显示出抗氧化活性。结果表明,根茎是生产有价值的工业产品的有用原料,从而可以提高农杆菌的经济效益。

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