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功能单细胞分析:微生物种群和群落的流式细胞术和细胞分选。

Functional single-cell analyses: flow cytometry and cell sorting of microbial populations and communities.

机构信息

Department of Environmental Microbiology, UFZ - Helmholtz Centre for Environmental Research GmbH, Leipzig, Germany.

出版信息

FEMS Microbiol Rev. 2010 Jul;34(4):554-87. doi: 10.1111/j.1574-6976.2010.00214.x. Epub 2010 Feb 6.

Abstract

The still poorly explored world of microbial functioning is about to be uncovered by a combined application of old and new technologies. Bacteria, especially, are still in the dark with respect to their phylogenetic affiliations as well as their metabolic capabilities and functions. However, with the advent of sophisticated flow cytometric and cell sorting technologies in microbiological labs, there is now the possibility to gain this knowledge at the single-cell level without cumbersome cultivation approaches. Cytometry also facilitates the understanding of physiological diversity in seemingly likewise acting populations. Both individuality and diversity lead to the complex and concerted actions of microbial consortia. This review provides an overview of the state of the art in the field. It deals with the handling of microorganisms from the very beginning (i.e. sampling, and detachment and fixation procedures) and goes on to discuss the pitfalls and problems in analysing cells without any further treatment. If information cannot be gained by specific staining procedures, phylogenetic technologies, transcriptomic and proteomic approaches may be options for achieving advanced insights. All in all, flow cytometry will be a mediator technology to gain a deeper insight into the heterogeneity of populations and the functioning of microbial communities.

摘要

微生物功能的这个仍然探索不足的世界,即将通过旧技术和新技术的结合应用而被揭示。细菌,尤其是在其系统发育相关性以及代谢能力和功能方面,仍然知之甚少。然而,随着复杂的流式细胞术和细胞分选技术在微生物实验室中的出现,现在有可能在无需繁琐培养方法的情况下,在单细胞水平上获得这些知识。细胞术还有助于理解看似相同作用的群体中的生理多样性。个体性和多样性导致微生物群落的复杂协调作用。这篇综述概述了该领域的最新技术。它从微生物的处理开始(即采样、分离和固定程序),并继续讨论在没有进一步处理的情况下分析细胞的陷阱和问题。如果无法通过特定的染色程序、系统发生技术、转录组学和蛋白质组学方法获得信息,那么这些方法可能是获得深入了解的选择。总的来说,流式细胞术将成为一种介导技术,以更深入地了解群体的异质性和微生物群落的功能。

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