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Development of a facile droplet-based single-cell isolation platform for cultivation and genomic analysis in microorganisms

机译:微生物栽培和基因组分析的基于液体液体分离平台的开发

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Wider application of single-cell analysis has been limited by the lack of an easy-to-use and low-cost strategy for single-cell isolation that can be directly coupled to single-cell sequencing and single-cell cultivation, especially for small-size microbes. Herein, a facile droplet microfluidic platform was developed to dispense individual microbial cells into conventional standard containers for downstream analysis. Functional parts for cell encapsulation, droplet inspection and sorting, as well as a chip-to-tube capillary interface were integrated on one single chip with simple architecture, and control of the droplet sorting was achieved by a low-cost solenoid microvalve. Using microalgal and yeast cells as models, single-cell isolation success rate of over 90% and single-cell cultivation success rate of 80% were demonstrated. We further showed that the individual cells isolated can be used in high-quality DNA and RNA analyses at both gene-specific and whole-genome levels (i.e. real-time quantitative PCR and genome sequencing). The simplicity and reliability of the method should improve accessibility of single-cell analysis and facilitate its wider application in microbiology researches.
机译:更广泛地应用单细胞分析受到易于使用和低成本策略的限制,可用于单细胞分离,可以直接耦合到单细胞测序和单细胞培养,特别是小 - 尺寸微生物。这里,开发了一种容易液滴微流体平台以将个体微生物细胞分配到用于下游分析的常规标准容器中。用于细胞封装,液滴检查和分类的功能部件,以及芯片到管毛细管接口在一个单一的架构上集成在一个具有简单架构的单个芯片上,并且通过低成本的螺线管微型阀实现了对液滴分选的控制。使用微藻和酵母细胞作为模型,表现出单细胞分离成功率超过90%,单细胞培养成功率为80%。我们进一步表明,分离的个体细胞可用于基因特异性和全基因组水平的高质量DNA和RNA分析(即实时定量PCR和基因组测序)。该方法的简单性和可靠性应提高单细胞分析的可访问性,并促进其更广泛的微生物学研究应用。

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