Advances in Aureobasidium research: Paving the path to industrial utilization

IF 5.7 2区 生物学 Microbial Biotechnology Pub Date : 2024-07-29 DOI:10.1111/1751-7915.14535
Difan Xiao, Marielle Driller, Marie Dielentheis-Frenken, Frederick Haala, Philipp Kohl, Karla Stein, Lars M. Blank, Till Tiso
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Abstract

We here explore the potential of the fungal genus Aureobasidium as a prototype for a microbial chassis for industrial biotechnology in the context of a developing circular bioeconomy. The study emphasizes the physiological advantages of Aureobasidium, including its polyextremotolerance, broad substrate spectrum, and diverse product range, making it a promising candidate for cost-effective and sustainable industrial processes. In the second part, recent advances in genetic tool development, as well as approaches for up-scaled fermentation, are described. This review adds to the growing body of scientific literature on this remarkable fungus and reveals its potential for future use in the biotechnological industry.

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Aureobasidium 研究进展:为工业利用铺平道路。
我们在此探讨了真菌 Aureobasidium 属在发展循环生物经济的背景下作为工业生物技术微生物底盘原型的潜力。研究强调了金杆菌的生理优势,包括其多极端耐受性、广泛的底物谱和多样的产品范围,使其成为具有成本效益和可持续工业过程的有希望的候选者。第二部分介绍了基因工具开发的最新进展以及扩大发酵规模的方法。这篇综述为有关这种非凡真菌的科学文献增添了新的内容,并揭示了它未来在生物技术产业中的应用潜力。
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来源期刊
Microbial Biotechnology
Microbial Biotechnology Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
11.20
自引率
3.50%
发文量
162
审稿时长
1 months
期刊介绍: Microbial Biotechnology publishes papers of original research reporting significant advances in any aspect of microbial applications, including, but not limited to biotechnologies related to: Green chemistry; Primary metabolites; Food, beverages and supplements; Secondary metabolites and natural products; Pharmaceuticals; Diagnostics; Agriculture; Bioenergy; Biomining, including oil recovery and processing; Bioremediation; Biopolymers, biomaterials; Bionanotechnology; Biosurfactants and bioemulsifiers; Compatible solutes and bioprotectants; Biosensors, monitoring systems, quantitative microbial risk assessment; Technology development; Protein engineering; Functional genomics; Metabolic engineering; Metabolic design; Systems analysis, modelling; Process engineering; Biologically-based analytical methods; Microbially-based strategies in public health; Microbially-based strategies to influence global processes
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