Analysis of the Mechanism of Gram Differentiation by Use of a Filter-Paper Chromatographic Technique

Author:

Bartholomew J. W.1,Cromwell Thomas1,Gan Richard1

Affiliation:

1. Department of Biological Sciences, University of Southern California, Los Angeles, California

Abstract

Bartholomew , J. W. (University of Southern California, Los Angeles), Thomas Cromwell, and Richard Gan . Analysis of the mechanism of Gram differentiation by use of a filter-paper chromatographic technique. J. Bacteriol. 90: 766–777. 1965.—Data are presented which demonstrate that the mechanism of gram-positivity could not be due solely to factors such as a single, specific gram-positive substrate, specific affinities of crystal violet for certain cellular components, a specific crystal violet-iodine-substrate complex, or to any specific characteristic of the dye, iodine, or solvent molecules. Ruptured cells of gram-positive organisms stain gram-negatively when subjected to a standard Gram-stain procedure. However, when stained fragments of broken cells were deposited in thick layers on the surface of filter-paper strips and exposed to decolorizers, the rate of dye release correlated with the Gram characteristic of the intact cell. Therefore, the intact cell in itself is not an absolute requirement for Gram differentiation. The data are interpreted as indicating that the mechanism of Gram differentiation primarily involves the rate of permeation of molecules (dye, iodine, solvent) through the interstitial spaces of cell-wall material.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Dye Complexes Produced in Gram Staining;Stain Technology;1973-01

2. A Simple Technique for the Quantitative Assessment of Gram Positivity;Journal of Applied Bacteriology;1971-06

3. Gram Staining and Its Molecular Mechanism;International Review of Cytology;1970

4. The Binding of Crystal Violet by Isolated Bacterial Cell-wall Material;Journal of General Microbiology;1969-12-01

5. THE TOPOGRAPHY OF THE BACTERIAL CELL WALL;Annual Review of Microbiology;1969-10

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