Related Experiment Video
Updated: Aug 21, 2026

Following in Real Time the Impact of Pneumococcal Virulence Factors in an Acute Mouse Pneumonia Model Using Bioluminescent Bacteria
Published on: February 23, 2014
The effect of mutation on Rhodococcus equi virulence plasmid gene expression and mouse virulence
1Department of Pathobiology, University of Guelph, Guelph, Ont., Canada N1G 2W1.
Abstract:
An 81 kb virulence plasmid containing a pathogenicity island (PI) plays a crucial role in the pathogenesis of Rhodococcus equi pneumonia in foals but its specific function in virulence and regulation of plasmid-encoded virulence genes is unclear. Using a LacZ selection marker developed for R. equi in this study, in combination with an apramycin resistance gene, an efficient two-stage homologous recombination targeted gene mutation procedure was used to mutate three virulence plasmid genes, a LysR regulatory gene homologue (ORF4), a ResD-like two-component response regulator homologue (ORF8), and a gene (ORF10) of unknown function that is highly expressed by R. equi inside macrophages, as well as the chromosomal gene operon, phoPR. Virulence testing by liver clearance after intravenous injection in mice showed that the ORF4 and ORF8 mutants were fully attenuated, that the phoPR mutant was hypervirulent, and that virulence of the ORF10 mutant remained unchanged. A virulence plasmid DNA microarray was used to compare the plasmid gene expression profile of each of the four gene-targeted mutants against the parental R. equi strain. Changes were limited to PI genes and gene induction was observed for all mutants, suggesting that expression of virulence plasmid genes is dominated by a negative regulatory network. The finding of attenuation of ORF4 and ORF8 mutants despite enhanced transcription of vapA suggests that factors other than VapA are important for full expression of virulence. ORF1, a putative Lsr antigen gene, was strongly and similarly induced in all mutants, implying a common regulatory pathway affecting this gene for all four mutated genes. ORF8 is apparently the centre of this common pathway. Two distinct highly correlated gene induction patterns were observed, that of the ORF4 and ORF8 mutants, and that of the ORF10 and phoPR mutants. The gene induction pattern distinguishing these two groups paralleled their virulence in mice.
Insights
Targeting virulence plasmid genes in Rhodococcus equi revealed key regulators of foal pneumonia. Mutating ORF4 and ORF8 attenuated virulence, while ORF10 and phoPR affected gene expression patterns.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- The 81 kb virulence plasmid and its pathogenicity island (PI) are critical for Rhodococcus equi pneumonia in foals.
- The precise roles of plasmid-encoded genes in virulence and their regulatory mechanisms remain largely unknown.
Purpose of the Study:
- To investigate the function of specific virulence plasmid genes (ORF4, ORF8, ORF10) and the chromosomal phoPR operon in R. equi pathogenesis.
- To elucidate the regulatory network governing the expression of virulence plasmid genes.
Main Methods:
- Development of an efficient two-stage homologous recombination system for targeted gene mutation in R. equi using LacZ and apramycin resistance markers.
- Construction and virulence testing (liver clearance in mice) of targeted mutants for ORF4, ORF8, ORF10, and phoPR.
- Analysis of virulence plasmid gene expression profiles using a virulence plasmid DNA microarray.
Main Results:
- Mutants lacking ORF4 or ORF8 were fully attenuated in virulence, while the phoPR mutant was hypervirulent; ORF10 mutation had no significant effect.
- Gene expression analysis revealed that virulence plasmid gene expression is primarily controlled by a negative regulatory network.
- Distinct gene induction patterns correlated with the virulence of the mutants, with ORF8 identified as a central regulatory point.
Conclusions:
- ORF4 and ORF8 are essential positive regulators of R. equi virulence, independent of vapA expression levels.
- The phoPR operon and ORF10 play roles in regulating virulence gene expression, contributing to distinct regulatory pathways.
- Understanding these regulatory mechanisms provides insights into controlling R. equi pathogenesis.
More Related Videos
08:34Generation of In-Frame Gene Deletion Mutants in Pseudomonas aeruginosa and Testing for Virulence Attenuation in a Simple Mouse Model of Infection
Published on: January 8, 2020
06:30A Non-Coding Small RNA MicC Contributes to Virulence in Outer Membrane Proteins in Salmonella Enteritidis
Published on: January 27, 2021
Related Concept Videos
In-vitro Mutagenesis
Gene Regulation in Microbial Communities: Quorum Sensing