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Dynamic control and quantification of bacterial population dynamics in droplets

机译:液滴中细菌种群动态的动态控制和定量

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摘要

Culturing and measuring bacterial population dynamics are critical to develop insights into gene regulation or bacterial physiology. Traditional methods, based on bulk culture to obtain such quantification, have the limitations of higher cost/volume of reagents, non-amendable to small size of population and more laborious manipulation. To this end, droplet-based microfluidics represents a promising alternative that is cost-effective and high-throughput. However, difficulties in manipulating the droplet environment and monitoring encapsulated bacterial population for long-term experiments limit its utilization. To overcome these limitations, we used an electrode-free injection technology to modulate the chemical environment in droplets. This ability is critical for precise control of bacterial dynamics in droplets. Moreover, we developed a trapping device for long-term monitoring of population dynamics in individual droplets for at least 240 h. We demonstrated the utility of this new microfluidic system by quantifying population dynamics of natural and engineered bacteria. Our approach can further improve the analysis for systems and synthetic biology in terms of manipulability and high temporal resolution. (C) 2015 Elsevier Ltd. All rights reserved.
机译:培养和测量细菌种群动态对于开发对基因调控或细菌生理学的洞察力至关重要。传统方法基于散装培养物获得此类定量,具有更高成本/体积的试剂的局限性,不可缩小的人口,更加费力的操作。为此,基于液滴的微流体代表了具有成本效益和高吞吐量的有前途的替代方案。然而,在长期实验中操纵液滴环境和监测封装的细菌种群的困难限制了其利用率。为了克服这些限制,我们使用无电极注入技术来调节液滴中的化学环境。这种能力对于精确控制液滴中的细菌动态的精确控制至关重要。此外,我们开发了一种诱捕装置,用于长期监测单个液滴中的人口动态至少240小时。我们通过量化自然和工程细菌的人口动态来证明了这种新的微流体系统的效用。我们的方法可以进一步改善可操纵性和高时分辨率的系统和合成生物学的分析。 (c)2015 Elsevier Ltd.保留所有权利。

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