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吖啶橙染色细菌的荧光差异及热效应

The differential fluorescence of bacteria stained with acridine orange and the effects of heat.

作者信息

Back J P, Kroll R G

机构信息

Department of Microbiology, AFRC Institute of Food Research, Reading, Berks., UK.

出版信息

J Appl Bacteriol. 1991 Jul;71(1):51-8.

PMID:1716625
Abstract

Some factors affecting the fluorescence of bacteria stained with acridine orange and the direct epifluorescent filter technique (DEFT) were studied. When bacterial cells from a chemostat operated at dilution rates between 0.1 and 0.7/h were used the differential fluorescence observed in the DEFT related to cell 'activity' and the orange fluorescence, which was predominant at high growth rates, may be related to an increase in the RNA content of the cells. Heat affected the colour of cell fluorescence and this was dependent on the cell type and, in particular, age. Uptake of acridine orange into the cells was also found to be an important factor determining the colour of fluorescence. However, with heat-treated cells there was no correlation between the amount of uptake and colour of fluorescence. The relative amounts and degree of denaturation of the different types of nucleic acids remaining in the cells after heat treatment appeared primarily to determine the colour of fluorescence.

摘要

研究了一些影响用吖啶橙染色的细菌荧光以及直接落射荧光滤光技术(DEFT)的因素。当使用来自在稀释率为0.1至0.7/h之间运行的恒化器的细菌细胞时,在DEFT中观察到的与细胞“活性”相关的差异荧光以及在高生长速率下占主导的橙色荧光,可能与细胞RNA含量的增加有关。加热影响细胞荧光的颜色,这取决于细胞类型,尤其是细胞年龄。还发现吖啶橙进入细胞的摄取是决定荧光颜色的一个重要因素。然而,对于热处理的细胞,摄取量与荧光颜色之间没有相关性。热处理后细胞中残留的不同类型核酸的相对量和变性程度似乎主要决定了荧光的颜色。

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