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A simple viability analysis for unicellular cyanobacteria using a new autofluorescence assay, automated microscopy, and ImageJ

机译:使用新的自发荧光测定,自动显微镜和ImageJ对单细胞蓝细菌进行简单的生存力分析

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Background Currently established methods to identify viable and non-viable cells of cyanobacteria are either time-consuming (eg. plating) or preparation-intensive (eg. fluorescent staining). In this paper we present a new and fast viability assay for unicellular cyanobacteria, which uses red chlorophyll fluorescence and an unspecific green autofluorescence for the differentiation of viable and non-viable cells without the need of sample preparation. Results The viability assay for unicellular cyanobacteria using red and green autofluorescence was established and validated for the model organism Synechocystis sp. PCC 6803. Both autofluorescence signals could be observed simultaneously allowing a direct classification of viable and non-viable cells. The results were confirmed by plating/colony count, absorption spectra and chlorophyll measurements. The use of an automated fluorescence microscope and a novel ImageJ based image analysis plugin allow a semi-automated analysis. Conclusions The new method simplifies the process of viability analysis and allows a quick and accurate analysis. Furthermore results indicate that a combination of the new assay with absorption spectra or chlorophyll concentration measurements allows the estimation of the vitality of cells.
机译:背景技术目前建立的鉴定蓝细菌活细胞和非活细胞的方法既费时(例如铺板),又需要大量准备(例如荧光染色)。在本文中,我们提出了一种用于单细胞蓝细菌的新的快速活力测定方法,该方法使用红色叶绿素荧光和非特异性绿色自发荧光来区分活细胞和非活细胞,而无需样品制备。结果建立了利用红色和绿色自发荧光进行单细胞蓝细菌活力测定的方法,并验证了模型生物Synechocystis sp。的有效性。 PCC6803。可以同时观察到两个自发荧光信号,从而可以对活细胞和非活细胞进行直接分类。通过平板/菌落计数,吸收光谱和叶绿素测量结果证实了该结果。使用自动荧光显微镜和新颖的基于ImageJ的图像分析插件可以进行半自动化分析。结论新方法简化了生存力分析过程,并可以进行快速而准确的分析。此外,结果表明,将新检测方法与吸收光谱或叶绿素浓度测量值结合使用,可以估算细胞的活力。

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