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RT-qPCR based quantitative analysis of gene expression in single bacterial cells

机译:基于RT-qPCR的单细菌细胞基因表达定量分析

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摘要

Recent evidence suggests that cell-to-cell difference at the gene expression level is an order of magnitude greater than previously thought even for isogenic bacterial populations. Such gene expression heterogeneity determines the fate of individual bacterial cells in populations and could also affect the ultimate fate of populations themselves. To quantify the heterogeneity and its biological significance, quantitative methods to measure gene expression in single bacterial cells are needed. In this work, we developed two SYBR Green-based RT-qPCR methods to determine gene expression directly in single bacterial cells. The first method involves a single-tube operation that can analyze one gene from each bacterial cell. The second method is featured by a two-stage protocol that consists of RNA isolation from a single bacterial cell and cDNA synthesis in the first stage, and qPCR in the second stage, which allows determination of expression level of multiple genes simultaneously for single bacterial cells of both gram-positive and negative. We applied the methods to stress-treated (i.e. low pH and high temperature) Escherichia coli populations. The reproducible results demonstrated that the method is sensitive enough not only for measuring cellular responses at the single-cell level, but also for revealing gene expression heterogeneity among the bacterial cells. Furthermore, our results showed that the two-stage method can reproducibly measure multiple highly expressed genes from a single E. coli cell, which exhibits important foundation for future development of a high throughput and lab-on-chips whole-genome RT-qPCR methodology for single bacterial cells
机译:最近的证据表明,即使对于同基因细菌种群,在基因表达水平上的细胞间差异也比先前认为的大一个数量级。这种基因表达的异质性决定了种群中单个细菌细胞的命运,也可能影响种群自身的最终命运。为了量化异质性及其生物学意义,需要定量方法来测量单个细菌细胞中的基因表达。在这项工作中,我们开发了两种基于SYBR Green的RT-qPCR方法来直接确定单个细菌细胞中的基因表达。第一种方法涉及单管操作,可以分析每个细菌细胞中的一个基因。第二种方法的特点是分两个阶段进行,该阶段包括从单个细菌细胞中分离RNA和在第一步中进行cDNA合成,在第二步中进行qPCR,从而可以同时确定单个细菌细胞中多个基因的表达水平。革兰氏阳性和阴性。我们将这些方法应用于经过压力处理(即低pH和高温)的大肠杆菌种群。可重现的结果表明,该方法不仅对于在单细胞水平上测量细胞反应,而且对于揭示细菌细胞之间的基因表达异质性都足够灵敏。此外,我们的结果表明,两步法可以从单个大肠杆菌细胞中重复检测多个高度表达的基因,这为将来开发高通量和芯片实验室全基因组RT-qPCR方法奠定了重要基础。用于单个细菌细胞

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