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Physical Characterization and Quantification of Bacteria by Sedimentation Field-Flow Fractionation

机译:沉降场流分馏法对细菌的物理表征和定量

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Studies in microbial ecology require accurate measures of cell number and biomass. Although epifluorescence microscopy is an accepted and dependable method for determining cell numbers, current methods of converting biovolume to biomass are error prone, tedious, and labor-intensive. This paper describes a technique with sedimentation field-flow fractionation to enumerate bacteria and determine their density, size, and mass. Using cultured cells of different shapes and sizes, we determined optimum values for separation run parameters and sample-handling procedures. The technique described can separate and detect 4′, 6-diamidino-2-phenylindole-stained cells and generate a fractogram from which cell numbers and their size or mass distribution can be calculated. A direct method for estimating bacterial biomass (dry organic matter content) which offers distinct advantages over present methods for calculating biomass has been developed.
机译:微生物生态学研究需要细胞数量和生物量的准确测量。尽管落射荧光显微镜是一种确定细胞数量的公认且可靠的方法,但是当前将生物体积转化为生物质的方法容易出错,乏味且劳动强度大。本文介绍了一种利用沉降场流分馏技术来枚举细菌并确定其密度,大小和质量的技术。使用不同形状和大小的培养细胞,我们确定了分离运行参数和样品处理程序的最佳值。所描述的技术可以分离并检测4',6-二mid基-2-苯基吲哚染色的细胞,并生成一个分形图,从中可以计算出细胞数量及其大小或质量分布。已经开发了一种直接估算细菌生物量(干有机物质含量)的方法,该方法相对于目前的生物量计算方法具有明显的优势。

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