通过浸没发酵生产真菌纤维素酶的方法。

Madiha Nazir, Attia Iram, Deniz Cekmecelioglu, Ali Demirci
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引用次数: 0

摘要

真菌纤维素酶是近四十年来从微生物来源生产的最受欢迎的生物分子。纤维素是地球上最丰富的资源,由于其在生物能源工业中用于水解纤维素的新兴应用,研究趋势正大量转向适应浸没式发酵。然而,丝状真菌物种是高效的纤维素酶生产者,它们非常适合以低水分的固体支持物作为底物,如自然界中的底物。因此,目前正在研究各种发酵策略,以使它们适应浸没式发酵,从而大量、高质量地生产纤维素酶。新出现的研究趋势,如使用廉价原料、营养和/或培养优化、创新的生物反应器设计、微颗粒辅助真菌生长以及创新的基因工程方法等,都是研究人员近期为充分挖掘这些生物分子的潜力而做出的努力。本综述讨论了其中一些策略及其在各种研究条件下的成功率。此外,还特别关注如何提高纤维素酶的市场价值,以及在工业规模上提高纤维素酶产量所需的创新战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approaches for Producing Fungal Cellulases Through Submerged Fermentation.

Fungal cellulases are the most sought-after biological molecules produced from microbial sources in the last four decades. Owing to their emerging applications in the bioenergy industry for hydrolyzing cellulose, for which they are the most abundant source on this planet, research trends are shifting heavily toward adapting to submerged fermentation. However, filamentous fungal species, which are efficient cellulase producers, are well-adapted to low-moisture solid support as the substrate, such as in nature. Therefore, various fermentation strategies are currently being investigated to adapt them to submerged fermentation for large and high-quality production of cellulases. Emerging research trends, such as the use of inexpensive feedstocks, nutrient and/or culture optimization, innovative bioreactor designs, microparticle-assisted fungal growth, and innovative genetic engineering approaches, are some of the recent efforts by researchers to exploit the full potential of these biological molecules. This review discusses some of these strategies and their success rates in various research conditions. In addition, specific focus was provided to both increasing the market value of cellulases and the innovative strategies required to enhance their production on an industrial scale.

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