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Comparison of Light and Electron Microscopic Determinations of the Number of Bacteria and Algae in Lake Water

机译:光电子显微镜测定湖水中细菌和藻类数量的比较

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摘要

Determinations of the number of microorganisms in lake water samples with the bright-field light microscope were performed using conventional counting chambers. Determinations with the fluorescence microscope were carried out after staining the organisms with acridine orange and filtering them onto Nuclepore filters. For transmission electron microscopy, a water sample was concentrated by centrifugation. The pellet was solidifed in agar, fixed, dehydrated, embedded in Epon, and cut into thin sections. The number and area of organism profiles per unit area of the sections were determined. The number of organisms per unit volume of the pellet was then calculated using stereological formulae. The corresponding number in the lake water was obtained from the ratio of volume of solidified pellet/volume of water sample. Control experiments with pure cultures of bacteria and algae showed good agreement between light and electron microscopic counts. This was also true for most lake water samples, but the electron microscopic preparations from some samples contained small vibrio-like bodies and ill-defined structures that made a precise comparison more difficult. Bacteria and small blue-green and green algae could not always be differentiated with the light microscope, but this was easily done by electron microscopy. Our results show that transmission electron microscopy can be used for checking light microscopic counts of microorganisms in lake water.
机译:使用常规的计数室,通过明场光学显微镜对湖水样品中的微生物数量进行测定。用the啶橙染色生物并将其过滤到Nuclepore过滤器上后,用荧光显微镜进行测定。对于透射电子显微镜,通过离心浓缩水样品。将沉淀物在琼脂中固化,固定,脱水,包埋在Epon中并切成薄片。确定了切片每单位面积的生物概况的数量和面积。然后使用立体学公式计算每单位体积沉淀的生物数量。从固化颗粒的体积/水样体积的比率中可以得到湖水中的相应数量。用细菌和藻类的纯培养物进行的对照实验表明,光和电子显微镜计数之间具有良好的一致性。大多数湖水样品也是如此,但是一些样品的电子显微镜制备物含有小的弧菌体和结构不明确的结构,这使得进行精确比较变得更加困难。细菌,蓝绿色和绿色小藻类无法始终通过光学显微镜进行区分,但这可以通过电子显微镜轻松实现。我们的结果表明,透射电子显微镜可用于检查湖水中微生物的光学显微镜计数。

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