农业废弃物中真菌和细菌生产纤维素酶及其工业应用研究进展

M. Imran, Z. Anwar, M. Irshad, M. Asad, H. Ashfaq
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引用次数: 93

摘要

在能源匮乏的世界,纤维素酶在利用木质纤维素废料生产生物乙醇和沼气的替代能源方面发挥着重要作用。本研究重点介绍了生产纤维素酶的真菌和细菌菌株及其工业应用。与水下发酵技术相比,固态发酵(SSF)是更适合纤维素酶生产的工艺。真菌纤维素体系统生产纤维素酶是更理想的和耐恶劣的环境条件。与曲霉和腐殖酸菌相比,木霉被认为是最适合纤维素酶生产和工业利用的候选物种。而经过基因改造的曲霉菌株产生纤维素酶的能力相对较高。细菌纤维素酶对碱性和亲热性条件的耐受性更强,是洗衣店的良好候选者。纤维素酶用于各种行业,如纺织、洗涤剂和洗衣店、食品工业、造纸和纸浆工业以及生物燃料生产。热稳定的真菌和细菌修饰菌株是纤维素酶生产的良好前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cellulase Production from Species of Fungi and Bacteria from Agricultural Wastes and Its Utilization in Industry: A Review
In energy deficient world, cellulases play a major role for the production of alternative energy resources utilizing lignocellulosic waste materials for bioethanol and biogas production. This study highlights fungal and bacterial strains for the production of cellulases and its industrial applications. Solid State Fermentation (SSF) is more suitable process for cellulase production as compared to submerge fermentation techniques. Fungal cellulosomes system for the production of cellulases is more desirable and resistant to harsh environmental conditions. Trichoderma species are considered as most suitable candidate for cellulase production and utilization in industry as compared to Aspergillus and Humicola species. However, genetically modified strains of Aspergillus have capability to produce cellulase in relatively higher amount. Bacterial cellulase are more resistant to alkaline and thermophile conditions and good candidate in laundries. Cellulases are used in variety of industries such as textile, detergents and laundries, food industry, paper and pulp industry and biofuel production. Thermally stable modified strains of fungi and bacteria are good future prospect for cellulase production.
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