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微生物共培养策略在高价值化合物生产中的应用——可持续生物炼制实施的可靠框架概述。

Microbial co-culturing strategies for the production high value compounds, a reliable framework towards sustainable biorefinery implementation - an overview.

机构信息

Biorefinery Group, Food Research Department, Faculty of Chemistry Sciences, Autonomous University of Coahuila, 25280 Saltillo, Coahuila, Mexico.

Biorefinery Group, Food Research Department, Faculty of Chemistry Sciences, Autonomous University of Coahuila, 25280 Saltillo, Coahuila, Mexico.

出版信息

Bioresour Technol. 2021 Feb;321:124458. doi: 10.1016/j.biortech.2020.124458. Epub 2020 Dec 5.

Abstract

The microbial co-cultures or consortia are a natural set of microorganisms formed from different species or the same species but different strains, in which members can interact with each other. The co-culture systems have wide variety of technological applications such as the production of foods, treatment of wastewater, removal of toxic substances, environmental recovery, and all these without the need to work in sterile conditions. Therefore, the need of understanding communication mechanisms between cell-to-cell within co-culture will allow to construct and to program their biological behavior from the use of complex substrates to produce biocompounds. The technology of co-culture systems enables the development of biorefinery platforms to obtain biofuels, and high value compounds through biomass transformation by sustainable process. This review focuses on understanding the roles of consortia microbial to design and built co-culture systems to produce high value compounds in terms a sustainable biorefinery.

摘要

微生物共培养物或群落是由不同物种或同一物种但不同菌株组成的自然微生物集合,其中成员可以相互作用。共培养系统具有广泛的技术应用,如食品生产、废水处理、去除有毒物质、环境恢复等,所有这些都不需要在无菌条件下进行。因此,需要了解共培养物中细胞间的通信机制,以便从使用复杂基质生产生物化合物的角度来构建和编程其生物行为。共培养系统技术使生物炼制平台的发展成为可能,通过可持续工艺通过生物质转化获得生物燃料和高价值化合物。本综述侧重于理解微生物群落的作用,以设计和构建共培养系统,以生产可持续生物炼制中的高价值化合物。

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