Related Experiment Video
Updated: Jun 28, 2026

The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
Role of RpoS in the virulence of Citrobacter rodentium
Tao Dong1, Brian K Coombes, Herb E Schellhorn
1Department of Biology, Life Sciences Building, Rm. 433, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4K1, Canada.
Abstract:
Citrobacter rodentium is a mouse enteropathogen that is closely related to Escherichia coli and causes severe colonic hyperplasia and bloody diarrhea. C. rodentium infection requires expression of genes of the locus of enterocyte effacement (LEE) pathogenicity island, which simulates infection by enteropathogenic E. coli and enterohemorrhagic E. coli in the human intestine, providing an effective model for studying enteropathogenesis. In this study we investigated the role of RpoS, the stationary phase sigma factor, in virulence in C. rodentium. Sequence analysis showed that the rpoS gene is highly conserved in C. rodentium and E. coli, exhibiting 92% identity. RpoS was critical for survival under heat shock conditions and during exposure to H(2)O(2) and positively regulated the expression of catalase KatE (HPII). The development of the RDAR (red dry and rough) morphotype, an important virulence trait in E. coli, was also mediated by RpoS in C. rodentium. Unlike E. coli, C. rodentium grew well in the mouse colon, and the wild-type strain colonized significantly better than rpoS mutants. However, a mutation in rpoS conferred a competitive growth advantage over the wild type both in vitro in Luria-Bertani medium and in vivo in the mouse colon. Survival analysis showed that the virulence of an rpoS mutant was attenuated. The expression of genes on the LEE pathogenicity island, which are essential for colonization and virulence, was reduced in the rpoS mutant. In conclusion, RpoS is important for the stress response and is required for full virulence in C. rodentium.
Insights
The stationary phase sigma factor RpoS is crucial for Citrobacter rodentium stress survival and virulence. However, RpoS mutants showed improved growth in vitro and in the mouse colon, suggesting a complex role in C. rodentium pathogenesis.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Citrobacter rodentium is a mouse enteropathogen closely related to E. coli.
- C. rodentium infection models human intestinal infections by enteropathogenic E. coli and enterohemorrhagic E. coli.
- The locus of enterocyte effacement (LEE) pathogenicity island is essential for C. rodentium virulence.
Purpose of the Study:
- To investigate the role of the stationary phase sigma factor, RpoS, in C. rodentium virulence.
- To understand RpoS's contribution to stress response and colonization in C. rodentium.
Main Methods:
- Sequence analysis of the conserved rpoS gene.
- Assessing RpoS's role in survival under heat shock and H2O2 exposure.
- Evaluating the development of the RDAR morphotype.
- Comparing colonization and growth of wild-type and rpoS mutant strains in vitro and in vivo.
- Analyzing the expression of LEE genes in rpoS mutants.
Main Results:
- RpoS is highly conserved between C. rodentium and E. coli.
- RpoS is critical for heat shock and H2O2 survival and regulates catalase KatE.
- RpoS mediates the RDAR morphotype development.
- Wild-type C. rodentium colonized the mouse colon better than rpoS mutants.
- rpoS mutants exhibited competitive growth advantage in vitro and in vivo.
- Virulence of rpoS mutants was attenuated, with reduced LEE gene expression.
Conclusions:
- RpoS is essential for C. rodentium stress response and full virulence.
- RpoS plays a complex role in C. rodentium, impacting both virulence and competitive growth.
Related Concept Videos
Regulation of Bacterial Virulence
Gene Regulation in Microbial Communities: Quorum Sensing
Determinants of Bacterial Pathogenicity and Virulence

