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嗜极原核内切木聚糖酶:多样性、适用性及分子见解

Extremophilic Prokaryotic Endoxylanases: Diversity, Applicability, and Molecular Insights.

作者信息

Verma Digvijay

机构信息

Department of Environmental Microbiology, Babasaheb Bhimrao Ambedkar University, Lucknow, India.

出版信息

Front Microbiol. 2021 Sep 9;12:728475. doi: 10.3389/fmicb.2021.728475. eCollection 2021.

Abstract

Extremophilic endoxylanases grabbed attention in recent years due to their applicability under harsh conditions of several industrial processes. Thermophilic, alkaliphilic, and acidophilic endoxylanases found their employability in bio-bleaching of paper pulp, bioconversion of lignocellulosic biomass into xylooligosaccharides, bioethanol production, and improving the nutritious value of bread and other bakery products. Xylanases obtained from extremophilic bacteria and archaea are considered better than fungal sources for several reasons. For example, enzymatic activity under broad pH and temperature range, low molecular weight, cellulase-free activity, and longer stability under extreme conditions of prokaryotic derived xylanases make them a good choice. In addition, a short life span, easy cultivation/harvesting methods, higher yield, and rapid DNA manipulations of bacterial and archaeal cells further reduces the overall cost of the product. This review focuses on the diversity of prokaryotic endoxylanases, their characteristics, and their functional attributes. Besides, the molecular mechanisms of their extreme behavior have also been presented here.

摘要

近年来,嗜极内切木聚糖酶因其在多个工业过程的苛刻条件下的适用性而备受关注。嗜热、嗜碱和嗜酸内切木聚糖酶在纸浆生物漂白、木质纤维素生物质生物转化为木寡糖、生物乙醇生产以及提高面包和其他烘焙产品的营养价值方面得到了应用。从嗜极细菌和古菌中获得的木聚糖酶由于多种原因被认为比真菌来源的更好。例如,在较宽的pH和温度范围内的酶活性、低分子量、无纤维素酶活性以及原核生物衍生的木聚糖酶在极端条件下更长的稳定性使它们成为一个不错的选择。此外,细菌和古菌细胞的短寿命、易于培养/收获的方法、更高的产量以及快速的DNA操作进一步降低了产品的总体成本。这篇综述重点关注原核内切木聚糖酶的多样性、它们的特性及其功能属性。此外,这里还介绍了它们极端行为的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e19/8458939/ba252eca8697/fmicb-12-728475-g001.jpg

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