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FLYCOP: metabolic modeling-based analysis and engineering microbial communities

机译:飞速:代谢建模的分析和工程微生物社区

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Motivation: Synthetic microbial communities begin to be considered as promising multicellular biocatalysts having a large potential to replace engineered single strains in biotechnology applications, in pharmaceutical, chemical and living architecture sectors. In contrast to single strain engineering, the effective and high-throughput analysis and engineering of microbial consortia face the lack of knowledge, tools and well-defined workflows. This manuscript contributes to fill this important gap with a framework, called FLYCOP (FLexible sYnthetic Consortium OPtimization), which contributes to microbial consortia modeling and engineering, while improving the knowledge about how these communities work. FLYCOP selects the best consortium configuration to optimize a given goal, among multiple and diverse configurations, in a flexible way, taking temporal changes in metabolite concentrations into account.
机译:动机:合成微生物社区开始被认为是具有巨大潜力的有前途的多细胞生物催化剂,其在生物技术应用中取代工程单菌株,在制药,化学和生活建筑领域。 与单应变工程相比,微生物联盟的有效和高通量分析和工程面临着缺乏知识,工具和明确的工作流程。 此手稿有助于填补这一重要差距,框架称为飞速(灵活的合成联盟优化),这有助于微生物联盟建模和工程,同时提高这些社区如何工作的知识。 Flycop选择最佳的联盟配置,以灵活的方式优化给定的目标,在多种不同的配置中,考虑到代谢物浓度的时间变化。

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