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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Classification, mode of action and production strategy of xylanase and its application for biofuel production from water hyacinth
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Classification, mode of action and production strategy of xylanase and its application for biofuel production from water hyacinth

机译:木聚糖酶的分类,作用方式和生产策略及其在凤眼兰生物燃料生产中的应用

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摘要

Xylanases are classified under glycoside hydrolase families which represent one of the largest groups of commercial enzymes. Depolymerizing xylan molecules into monomeric pentose units involves the synergistic action of mainly two key enzymes which are endo-beta-xylanase and beta-xylosidase. Xylanases are different with respect to their mode of action, substrate specificities, biochemical properties, 3D structure and are widely produced by a spectrum of bacteria and fungi. Currently, large scale production of xylanase can be produced through the application of genetic engineering tool which allow fast identification of novel xylanase genes and their genetic variations makes it an ideal enzymes. Due to depletion of fossil fuel, there is urgent need to find out environment friendly and sustainable energy sources. Therefore, utilisation of cheap lignocellulosic materials along with proper optimisation of process is most important for cost efficient ethanol production. Among, various types of lignocellulosic substances, water hyacinth, a noxious aquatic weed, has been found in many tropical. Therefore, the technological development for biofuel production from water hyacinth is becoming commercially worthwhile. In this review, the classification and mode of action of xylanase including genetic regulation and strategy for robust xylanase production have been critically discussed from recent reports. In addition various strategies for cost effective biofuel production from water hyacinth including chimeric proteins design has also been critically evaluated. (C) 2015 Elsevier B.V. All rights reserved.
机译:木聚糖酶被归类为糖苷水解酶家族,其代表最大的一组商业酶之一。将木聚糖分子解聚成单体戊糖单元涉及主要两种关键酶的协同作用,即内切-β-木聚糖酶和β-木糖苷酶。木聚糖酶的作用方式,底物特异性,生化特性,3D结构不同,并且广泛地由一系列细菌和真菌产生。当前,可通过应用基因工程工具来大规模生产木聚糖酶,所述基因工程工具可快速鉴定新的木聚糖酶基因,并且其遗传变异使其成为理想的酶。由于化石燃料的枯竭,迫切需要寻找环境友好和可持续的能源。因此,廉价的木质纤维素材料的利用以及适当的工艺优化对于经济高效的乙醇生产至关重要。其中,在许多热带地区都发现了各种类型的木质纤维素物质,水葫芦,一种有害的水生杂草。因此,用于从水葫芦生产生物燃料的技术发展变得商业上有价值。在这篇综述中,最近的报道对木聚糖酶的分类和作用方式,包括遗传调控和可靠的木聚糖酶生产策略进行了讨论。另外,还已经严格评估了从水葫芦生产具有成本效益的各种生物燃料的策略,包括嵌合蛋白的设计。 (C)2015 Elsevier B.V.保留所有权利。

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