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利用微滴限制间接富集理想但适应性较差的表型,从合成微生物群落中。

Indirect Enrichment of Desirable, but Less Fit Phenotypes, from a Synthetic Microbial Community Using Microdroplet Confinement.

机构信息

Department of Biosciences, Rice University, Houston, Texas 77005, United States.

Department of Mathematics, University of Houston, Houston, Texas 77204, United States.

出版信息

ACS Synth Biol. 2023 Apr 21;12(4):1239-1251. doi: 10.1021/acssynbio.3c00008. Epub 2023 Mar 17.

Abstract

Spatial structure within microbial communities can provide nearly limitless opportunities for social interactions and are an important driver for evolution. As metabolites are often molecular signals, metabolite diffusion within microbial communities can affect the composition and dynamics of the community in a manner that can be challenging to deconstruct. We used encapsulation of a synthetic microbial community within microdroplets to investigate the effects of spatial structure and metabolite diffusion on population dynamics and to examine the effects of cheating by one member of the community. The synthetic community was composed of three strains: a "Producer" that makes the diffusible quorum sensing molecule (-(3-oxododecanoyl)-l-homoserine lactone, C12-oxo-HSL) or AHL; a "Receiver" that is killed by AHL; and a Non-Producer or "cheater" that benefits from the extinction of the Receivers, but without the costs associated with the AHL synthesis. We demonstrate that despite rapid diffusion of AHL between microdroplets, the spatial structure imposed by the microdroplets allows a more efficient but transient enrichment of more rare and slower-growing Producer subpopulations. Eventually, the Non-Producer population drove the Producers to extinction. By including fluorescence-activated microdroplet sorting and providing sustained competition by the Receiver strain, we demonstrate a strategy for indirect enrichment of a rare and unlabeled Producer. The ability to screen and enrich metabolite Producers from a much larger population under conditions of rapid diffusion provides an important framework for the development of applications in synthetic ecology and biotechnology.

摘要

微生物群落内部的空间结构可以为社交互动提供几乎无限的机会,也是进化的重要驱动因素。由于代谢物通常是分子信号,因此微生物群落内部的代谢物扩散可以以一种难以解构的方式影响群落的组成和动态。我们使用微滴内的合成微生物群落的封装来研究空间结构和代谢物扩散对种群动态的影响,并检查群落中一个成员欺骗的影响。合成群落由三种菌株组成:一种是“生产者”,它产生可扩散的群体感应分子(-(3-氧代十二烷酰基)-l-高丝氨酸内酯,C12-oxo-HSL)或 AHL;一种是被 AHL 杀死的“接收器”;和一种非生产者或“骗子”,它受益于接收器的灭绝,但没有与 AHL 合成相关的成本。我们证明,尽管 AHL 在微滴之间迅速扩散,但微滴施加的空间结构允许更有效但短暂的丰富更稀有和生长更缓慢的生产者亚群。最终,非生产者种群将生产者推向灭绝。通过包括荧光激活微滴分选并通过接收器菌株提供持续竞争,我们展示了一种从更大的群体中筛选和富集稀有且未标记的生产者的策略。在快速扩散条件下从更大的群体中筛选和富集代谢物生产者的能力为合成生态学和生物技术中的应用发展提供了一个重要的框架。

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Modulation of microbial community dynamics by spatial partitioning.空间分区对微生物群落动态的调节。
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