Strategies to enhance production of metabolites in microbial co-culture systems

IF 9.7 1区 环境科学与生态学 Q1 AGRICULTURAL ENGINEERING Bioresource Technology Pub Date : 2024-06-26 DOI:10.1016/j.biortech.2024.131049
Lichun Guo , Bingwen Xi , Liushen Lu
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Abstract

Increasing evidence shows that microbial synthesis plays an important role in producing high value-added products. However, microbial monoculture generally hampers metabolites production and limits scalability due to the increased metabolic burden on the host strain. In contrast, co-culture is a more flexible approach to improve the environmental adaptability and reduce the overall metabolic burden. The well-defined co-culturing microbial consortia can tap their metabolic potential to obtain yet-to-be discovered and pre-existing metabolites. This review focuses on the use of a co-culture strategy and its underlying mechanisms to enhance the production of products. Notably, the significance of comprehending the microbial interactions, diverse communication modes, genetic information, and modular co-culture involved in co-culture systems were highlighted. Furthermore, it addresses the current challenges and outlines potential future directions for microbial co-culture. This review provides better understanding the diversity and complexity of the interesting interaction and communication to advance the development of co-culture techniques.

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提高微生物共培养系统代谢物产量的策略
越来越多的证据表明,微生物合成在生产高附加值产品方面发挥着重要作用。然而,由于宿主菌株的新陈代谢负担增加,微生物单一培养通常会阻碍代谢物的生产并限制可扩展性。相比之下,共培养是一种更灵活的方法,可提高环境适应性并减轻总体代谢负担。定义明确的共培养微生物联合体可以挖掘其代谢潜力,获得尚未发现和已经存在的代谢物。本综述重点介绍共培养策略的使用及其内在机制,以提高产品的产量。特别强调了理解共培养系统中涉及的微生物相互作用、多种交流模式、遗传信息和模块化共培养的重要性。此外,综述还探讨了微生物共培养目前面临的挑战,并概述了潜在的未来发展方向。本综述有助于更好地理解有趣的相互作用和交流的多样性和复杂性,从而推动共培养技术的发展。
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来源期刊
Bioresource Technology
Bioresource Technology 工程技术-能源与燃料
CiteScore
20.80
自引率
19.30%
发文量
2013
审稿时长
12 days
期刊介绍: Bioresource Technology publishes original articles, review articles, case studies, and short communications covering the fundamentals, applications, and management of bioresource technology. The journal seeks to advance and disseminate knowledge across various areas related to biomass, biological waste treatment, bioenergy, biotransformations, bioresource systems analysis, and associated conversion or production technologies. Topics include: • Biofuels: liquid and gaseous biofuels production, modeling and economics • Bioprocesses and bioproducts: biocatalysis and fermentations • Biomass and feedstocks utilization: bioconversion of agro-industrial residues • Environmental protection: biological waste treatment • Thermochemical conversion of biomass: combustion, pyrolysis, gasification, catalysis.
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