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首页> 外文期刊>Journal of Biotechnology >Synthetic Escherichia coli consortia engineered for syntrophy demonstrate enhanced biomass productivity
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Synthetic Escherichia coli consortia engineered for syntrophy demonstrate enhanced biomass productivity

机译:设计用于合成营养的合成大肠杆菌联合体显示出更高的生物质生产力

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Synthetic Escherichia coli consortia engineered for syntrophy demonstrated enhanced biomass productivity relative to monocultures. Binary consortia were designed to mimic a ubiquitous, naturally occurring ecological template of primary productivity supported by secondary consumption. The synthetic consortia replicated this evolution-proven strategy by combining a glucose positive E. coli strain, which served as the system's primary producer, with a glucose negative E. coli strain which consumed metabolic byproducts from the primary producer. The engineered consortia utilized strategic division of labor to simultaneously optimize multiple tasks enhancing overall culture performance. Consortial interactions resulted in the emergent property of enhanced system biomass productivity which was demonstrated with three distinct culturing systems: batch, chemostat and biofilm growth. Glucose-based biomass productivity increased by similar to 15, 20 and 50% compared to appropriate monoculture controls for these three culturing systems, respectively. Interestingly, the consortial interactions also produced biofilms with predictable, self-assembling, laminated microstructures. This study establishes a metabolic engineering paradigm which can be easily adapted to existing E. coli based bioprocesses to improve productivity based on a robust ecological theme. (C) 2011 Elsevier B.V. All rights reserved.
机译:经过工程改造的合成大肠杆菌联合体证明了相对于单一培养物提高的生物量生产力。二元联盟被设计成模仿无处不在的,自然产生的,以次级消费为支撑的初级生产力的生态模板。合成财团通过结合用作系统主要生产者的葡萄糖阳性大肠杆菌菌株和消耗来自主要生产者代谢副产物的葡萄糖阴性大肠杆菌菌株来复制这种经过进化论证的策略。这个工程联合体利用战略分工来同时优化多项任务,从而提高整体文化表现。构象相互作用导致系统生物质生产力的提高,这表现在三个不同的培养系统中:分批,化学恒温器和生物膜生长。与这三种培养系统的合适单培养对照相比,基于葡萄糖的生物量生产率分别提高了约15%,20%和50%。有趣的是,财团之间的相互作用还产生了具有可预测的,自组装的,层压的微结构的生物膜。这项研究建立了一个代谢工程范式,它可以很容易地适应现有的基于大肠杆菌的生物过程,从而基于强大的生态主题提高生产率。 (C)2011 Elsevier B.V.保留所有权利。

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