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嗜热真菌和细菌的耐热木聚糖酶:最新研究进展。

Thermostable xylanases from thermophilic fungi and bacteria: Current perspective.

机构信息

Department of Microbiology, Guru Nanak Dev University, Amritsar 143 005, India.

Department of Microbiology, Guru Nanak Dev University, Amritsar 143 005, India.

出版信息

Bioresour Technol. 2019 Apr;277:195-203. doi: 10.1016/j.biortech.2019.01.044. Epub 2019 Jan 11.

Abstract

Thermostable xylanases from thermophilic fungi and bacteria have a wide commercial acceptability in feed, food, paper and pulp and bioconversion of lignocellulosics with an estimated annual market of USD 500 Million. The genome wide analysis of thermophilic fungi clearly shows the presence of elaborate genetic information coding for multiple xylanases primarily coding for GH10, GH11 in addition to GH7 and GH30 xylanases. The transcriptomics and proteome profiling has given insight into the differential expression of these xylanases in some of the thermophilic fungi. Bioprospecting has resulted in identification of novel thermophilic xylanases that have been endorsed by the industrial houses for heterologous over- expression and formulations. The future use of xylanases is expected to increase exponentially for their role in biorefineries. The discovery of new and improvement of existing xylanases using molecular tools such as directed evolution is expected to be the mainstay to meet increasing demand of thermostable xylanases.

摘要

嗜热真菌和细菌来源的耐热木聚糖酶在饲料、食品、造纸和纸浆以及木质纤维素的生物转化方面具有广泛的商业接受度,其年估计市场价值为 5 亿美元。对嗜热真菌的全基因组分析清楚地表明,存在着复杂的遗传信息,这些信息主要编码 GH10 和 GH11 型木聚糖酶,此外还有 GH7 和 GH30 型木聚糖酶。转录组学和蛋白质组学分析深入了解了一些嗜热真菌中这些木聚糖酶的差异表达。生物勘探已经确定了新型嗜热木聚糖酶,这些酶已被工业界认可进行异源过表达和配方。由于其在生物炼制厂中的作用,木聚糖酶的未来使用预计将呈指数级增长。使用定向进化等分子工具发现新的和改进现有的木聚糖酶,预计将是满足耐热木聚糖酶日益增长需求的主要手段。

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