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丝状真菌新菌株驯化的考量因素

Considerations for Domestication of Novel Strains of Filamentous Fungi.

作者信息

Pullen Randi M, Decker Stephen R, Subramanian Venkataramanan, Adler Meaghan J, Tobias Alexander V, Perisin Matthew, Sund Christian J, Servinsky Matthew D, Kozlowski Mark T

机构信息

DEVCOM Army Research Laboratory, 2800 Powder Mill Rd., Adelphi, Maryland 20783, United States.

National Renewable Energy Laboratory, 15013 Denver West Parkway, Golden, Colorado 80401, United States.

出版信息

ACS Synth Biol. 2025 Feb 21;14(2):343-362. doi: 10.1021/acssynbio.4c00672. Epub 2025 Jan 30.

Abstract

Fungi, especially filamentous fungi, are a relatively understudied, biotechnologically useful resource with incredible potential for commercial applications. These multicellular eukaryotic organisms have long been exploited for their natural production of useful commodity chemicals and proteins such as enzymes used in starch processing, detergents, food and feed production, pulping and paper making and biofuels production. The ability of filamentous fungi to use a wide range of feedstocks is another key advantage. As chassis organisms, filamentous fungi can express cellular machinery, and metabolic and signal transduction pathways from both prokaryotic and eukaryotic origins. Their genomes abound with novel genetic elements and metabolic processes that can be harnessed for biotechnology applications. Synthetic biology tools are becoming inexpensive, modular, and expansive while systems biology is beginning to provide the level of understanding required to design increasingly complex synthetic systems. This review covers the challenges of working in filamentous fungi and offers a perspective on the approaches needed to exploit fungi as microbial cell factories.

摘要

真菌,尤其是丝状真菌,是一种研究相对较少但具有巨大商业应用潜力的生物技术有用资源。这些多细胞真核生物长期以来因其天然产生有用的商品化学品和蛋白质而被开发利用,例如用于淀粉加工、洗涤剂、食品和饲料生产、制浆造纸以及生物燃料生产的酶。丝状真菌能够利用多种原料是另一个关键优势。作为底盘生物,丝状真菌可以表达来自原核和真核来源的细胞机制、代谢和信号转导途径。它们的基因组富含可用于生物技术应用的新型遗传元件和代谢过程。合成生物学工具正变得价格低廉、模块化且应用广泛,而系统生物学也开始提供设计日益复杂的合成系统所需的理解水平。本综述涵盖了在丝状真菌中开展工作的挑战,并就将真菌开发为微生物细胞工厂所需的方法提供了观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72c3/11852223/c808e1a559fa/sb4c00672_0001.jpg

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