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Simultaneous determination of the total number of aquatic bacteria and the number thereof involved in respiration.

机译:同时测定水生细菌的总数及其参与呼吸的数量。

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摘要

The electron transport system of respiring organisms reduces 2-(p-iodophenyl)-3-(p-nitrophenyl)-5-phenyl tetrazolium chloride (INT) to INT-formazan. Respiring bacteria deposit accumulated INT-formazan intracellularly as dark red spots. Corresponding to electron transport system activity, these deposits attain a size and a degree of optical density which allows them to be examined by light microscopy. If polycarbonate filters and epifluorescence microscopy are applied to analyze an INT-treated water sample, it is possible to differentiate between respiring and apparently nonrespiring bacteria. This differentiation, which permits determinations of the total number of bacteria and the proportion thereof involved in respiration, is realized directly within one and the same microscopic image. Initial applications of the present method for hydrobiological purposes showed that the proportion of respiring aquatic bacteria ranged between 6 to 12% (samples taken from coastal areas of the Baltic Sea) and 5 to 36% (samples taken from freshwater lakes and ponds). Cells of 1.6 to 2.4 micrometer (freshwater) and 0.4 micrometer (Baltic Sea) account for the highest proportion of respiring bacteria.
机译:呼吸生物的电子传输系统将2-(对碘苯基)-3-(对硝基苯基)-5-苯基氯化四氮唑(INT)还原为INT-甲-。呼吸道细菌会在细胞内积聚积聚的INT-甲醛,为暗红色斑点。对应于电子传输系统的活性,这些沉积物具有一定的大小和一定程度的光密度,从而可以通过光学显微镜对其进行检查。如果将聚碳酸酯滤光片和落射荧光显微镜用于分析经INT处理的水样品,则可以区分呼吸细菌和显然是非呼吸细菌。这种区分允许确定细菌总数及其参与呼吸的比例,这种区分是直接在同一张显微图像中实现的。用于水生生物学目的的本方法的最初应用表明,呼吸性水生细菌的比例在6%至12%(从波罗的海沿岸地区获取)和5%至36%(从淡水湖泊和池塘中获取)之间。 1.6至2.4微米(淡水)和0.4微米(波罗的海)的细胞占呼吸细菌的比例最高。

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