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首页> 外文期刊>Journal of Microbiological Methods >Live imaging of the genetically intractable obligate intracellular bacteria Orientia tsutsugamushi using a panel of fluorescent dyes
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Live imaging of the genetically intractable obligate intracellular bacteria Orientia tsutsugamushi using a panel of fluorescent dyes

机译:使用一组荧光染料对遗传上难以处理的专性细胞内细菌东方ient虫进行实时成像

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摘要

Our understanding of the molecular mechanisms of bacterial infection and pathogenesis are disproportionally derived from a small number of well-characterised species and strains. One reason for this is the enormous time and resources required to develop a new organism into experimental system that can be interrogated at the molecular level, in particular with regards to the development of genetic tools. Live cell imaging by fluorescence microscopy is a powerful technique to study biological processes such as bacterial motility, host cell invasion, and bacterial growth and division. In the absence of genetic tools that enable exogenous expression of fluorescent proteins, fluorescent chemical probes can be used to label and track living cells. A large number of fluorescent chemical probes are commercially available, but these have overwhelmingly been applied to the study of eukaryotic cell systems. Here, we present a methodical analysis of four different classes of probes, which can be used to delineate the cytoplasm, nucleic acids, cell membrane or peptidoglycan of living bacterial cells. We have tested these in the context of the important but neglected human pathogen Orientia tsutsugamushi but expect that the methodology would be broadly applicable to other bacterial species. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:我们对细菌感染和发病机理的分子机制的理解不成比例地来自少数特征明确的物种和菌株。造成这种情况的一个原因是,将一种新的生物体发展成可以在分子水平上进行研究的实验系统所需的大量时间和资源,特别是在遗传工具的开发方面。通过荧光显微镜对活细胞成像是研究生物学过程(如细菌运动,宿主细胞入侵以及细菌生长和分裂)的一项强大技术。在缺少能够外源表达荧光蛋白的遗传工具的情况下,荧光化学探针可用于标记和跟踪活细胞。大量的荧光化学探针是可商购的,但是绝大多数已被用于真核细胞系统的研究。在此,我们对四种不同类别的探针进行了系统的分析,可用于描绘活细菌细胞的细胞质,核酸,细胞膜或肽聚糖。我们已经在重要但被忽略的人类病原体Or虫东方Or(Orientia tsutsugamushi)的背景下对它们进行了测试,但是期望该方法将广泛适用于其他细菌物种。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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