2010•PhytopathologyRequires access

Selective Media for Isolation of Agrobacterium, Corynebacterium, Erwinia, Pseudomonas, and Xanthomonas

Clarence I. Kado, M. G. Heskett

Open publisher page 759 citations

Abstract

Five selective plating media (designated as D-series media) were developed for plant-pathogenic bacteria in the genera Agrobacterium, Corynebacterium (including species pathogenic for animals and man), Erwinia, Pseudomonas, and Xanthomonas. The active constituents of these media were lithium chloride, sodium dodecyl sulfate, polymyxin, and glycine, all of which are known to affect the permeability of bacterial membranes. These selective media were designed using one or a combination of these compounds to permit the growth of bacteria of one genus and restrict the growth of all others. Using inoculum containing a mixture of different bacteria, the efficiencies of these media are as follows: Plating efficiencies ([colony numbers on selective medium : colony numbers on nonselective medium] × 102) were 90.3% for A. tumefaciens on medium D1; 27.1% for C. michiganense on medium D2; 77.7% for E. amylovora on medium D3; 6.5% for P. syringae on medium D4; and 78.4% for X. campestris on medium D5. Recovery efficiencies ([colony numbers from soil on selective medium: colony numbers without soil on the same selective medium] × 102) of the respective bacteria from soil artificially inoculated with a mixture of bacteria were 48.1% on D1, 79.8% on D2, 57.0% on D3, 26.9% on D4, and 79.9% on D5. Recovery of the pathogenic bacteria from diseased tissues was facilitated by these media.

About this research paper

What this paper is about

Five selective plating media (designated as D-series media) were developed for plant-pathogenic bacteria in the genera Agrobacterium, Corynebacterium (including species pathogenic for animals and man), Erwinia, Pseudomonas, and Xanthomonas. The active constituents of these media were lithium chloride, sodium dodecyl sulfate, polymyxin, and glycine, all of which are known to affect the permeability of bacterial membranes. These selective media were designed using one or a combination of these compounds to permit the growth of bacteria of one genus and restrict the growth of all others. Using inoculum containing a mixture of different bacteria, the efficiencies of these media are as follows: Plating efficiencies ([colony numbers on selective medium : colony numbers on nonselective medium] × 102) were 90.3% for A. tumefaciens on medium D1; 27.1% for C. michiganense on medium D2; 77.7% for E. amylovora on medium D3; 6.5% for P. syringae on medium D4; and 78.4% for X. campestris on medium D5. Recovery efficiencies ([colony numbers from soil on selective medium: colony numbers without soil on the same selective medium] × 102) of the respective bacteria from soil artificially inoculated with a mixture of bacteria were 48.1% on D1, 79.8% on D2, 57.0% on D3, 26.9% on D4, and 79.9% on D5. Recovery of the pathogenic bacteria from diseased tissues was facilitated by these media.

Why it matters

OpenAlex reports 759 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Five selective plating media (designated as D-series media) were developed for plant-pathogenic bacteria in the genera Agrobacterium, Corynebacterium (including species pathogenic for animals and man), Erwinia, Pseudomonas, and Xanthomonas. The active constituents of these media were lithium chloride, sodium dodecyl sulfate, polymyxin, and glycine, all of which are known to affect the permeability of bacterial membranes. These selective media were designed using one or a combination of these compounds to permit the growth of bacteria of one genus and restrict the growth of all others. Using inoculum containing a mixture of different bacteria, the efficiencies of these media are as follows: Plating efficiencies ([colony numbers on selective medium : colony numbers on nonselective medium] × 102) were 90.3% for A. tumefaciens on medium D1; 27.1% for C. michiganense on medium D2; 77.7% for E. amylovora on medium D3; 6.5% for P. syringae on medium D4; and 78.4% for X. campestris on medium D5. Recovery efficiencies ([colony numbers from soil on selective medium: colony numbers without soil on the same selective medium] × 102) of the respective bacteria from soil artificially inoculated with a mixture of bacteria were 48.1% on D1, 79.8% on D2, 57.0% on D3, 26.9% on D4, and 79.9% on D5. Recovery of the pathogenic bacteria from diseased tissues was facilitated by these media.

Key concepts: Biology, Erwinia, Xanthomonas, Agrobacterium, Isolation (microbiology), Pseudomonas, Microbiology, Corynebacterium

Related papers

Back to paper searchBrowse research topicsOriginal source
Selective Media for Isolation of Agrobacterium, Corynebacterium, Erwinia, Pseudomonas, and Xanthomonas — Research Paper | ScholarLens