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Measuring gene expression in single bacterial cells: recent advances in methods and micro-devices

机译:测量单个细菌细胞中的基因表达:方法和微型设备的最新进展

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Populations of bacterial cells that grow under the same conditions and/or environments are often considered to be uniform and thus can be described by ensemble average values of their physiologic, phenotypic, genotypic or other parameters. However, recent evidence suggests that cell-to-cell differences at the gene expression level could be an order of magnitude greater than previously thought even for isogenic bacterial populations. Such gene expression or transcriptional-level heterogeneity determines not only the fate of individual bacterial cells in a population but could also affect the ultimate fate of the population itself. Although techniques for single-cell gene expression measurement in eukaryotic cells have been successfully implemented for a decade or so, they have only recently become available for single bacterial cells. This is due to the difficulty of efficient lysis of most bacterial cells, as well as short half-life time (low stability) of bacterial mRNA. In this article, we review the recent progress and challenges associated with analyzing gene expression levels in single bacterial cells using various semi-quantitative and quantitative methods. In addition, a review of the recent progress in applying microfluidic devices to isolate single bacterial cells for gene expression analysis is also included.
机译:在相同条件和/或环境下生长的细菌细胞群体通常被认为是均匀的,因此可以通过其生理,表型,基因型或其他参数的整体平均值来描述。但是,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可能比先前认为的大一个数量级。这种基因表达或转录水平的异质性不仅决定了种群中单个细菌细胞的命运,而且还可能影响种群本身的最终命运。尽管在真核细胞中用于单细胞基因表达测量的技术已经成功实施了十多年左右,但它们直到最近才可用于单个细菌细胞。这是由于难以有效裂解大多数细菌细胞,以及细菌mRNA的半衰期短(稳定性低)所致。在本文中,我们回顾了使用各种半定量和定量方法分析单个细菌细胞中基因表达水平的最新进展和挑战。另外,还包括对应用微流体装置分离单个细菌细胞进行基因表达分析的最新进展的综述。

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