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Metabolic modelling approaches for describing and engineering microbial communities

机译:用于描述和工程微生物群落的代谢建模方法

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摘要

Microbes do not live in isolation but in microbial communities. The relevance of microbial communities is increasing due to growing awareness of their influence on a huge number of environmental, health and industrial processes. Hence, being able to control and engineer the output of both natural and synthetic communities would be of great interest. However, most of the available methods and biotechnological applications involving microorganisms, both in vivo and in silico, have been developed in the context of isolated microbes. In vivo microbial consortia development is extremely difficult and costly because it implies replicating suitable environments in the wet-lab. Computational approaches are thus a good, cost-effective alternative to study microbial communities, mainly via descriptive modelling, but also via engineering modelling. In this review we provide a detailed compilation of examples of engineered microbial communities and a comprehensive, historical revision of available computational metabolic modelling methods to better understand, and rationally engineer wild and synthetic microbial communities.
机译:微生物不孤立,但在微生物社区中。由于对其对大量环境,健康和工业流程的影响,微生物社区的相关性正在增加。因此,能够控制和工程师,自然和合成社区的输出将是非常兴趣的。然而,涉及体内和硅的微生物的大多数可用方法和生物技术应用已经在分离的微生物的背景下开发。体内微生物联盟的开发极其困难且成本高昂,因为它意味着复制湿实验室的合适环境。因此,计算方法是研究微生物社区的良好,经济效益的替代方案,主要是通过描述性建模,而且通过工程建模。在本次审查中,我们详细汇编了工程化的微生物社区的例子和可用的计算代谢建模方法的全面历史修订,以更好地理解,合理的工程师野生和合成微生物社区。

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