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Updated: May 8, 2026

Chronic Salmonella Infected Mouse Model
Published on: May 31, 2010
Diverse secreted effectors are required for Salmonella persistence in a mouse infection model
Afshan S Kidwai1, Ivy Mushamiri, George S Niemann
1Department of Molecular Microbiology and Immunology, Oregon Health & Science University, Portland, Oregon, USA.
Abstract:
Salmonella enterica serovar Typhimurium causes typhoid-like disease in mice and is a model of typhoid fever in humans. One of the hallmarks of typhoid is persistence, the ability of the bacteria to survive in the host weeks after infection. Virulence factors called effectors facilitate this process by direct transfer to the cytoplasm of infected cells thereby subverting cellular processes. Secretion of effectors to the cell cytoplasm takes place through multiple routes, including two separate type III secretion (T3SS) apparati as well as outer membrane vesicles. The two T3SS are encoded on separate pathogenicity islands, SPI-1 and -2, with SPI-1 more strongly associated with the intestinal phase of infection, and SPI-2 with the systemic phase. Both T3SS are required for persistence, but the effectors required have not been systematically evaluated. In this study, mutations in 48 described effectors were tested for persistence. We replaced each effector with a specific DNA barcode sequence by allelic exchange and co-infected with a wild-type reference to calculate the ratio of wild-type parent to mutant at different times after infection. The competitive index (CI) was determined by quantitative PCR in which primers that correspond to the barcode were used for amplification. Mutations in all but seven effectors reduced persistence demonstrating that most effectors were required. One exception was CigR, a recently discovered effector that is widely conserved throughout enteric bacteria. Deletion of cigR increased lethality, suggesting that it may be an anti-virulence factor. The fact that almost all Salmonella effectors are required for persistence argues against redundant functions. This is different from effector repertoires in other intracellular pathogens such as Legionella.
Insights
Salmonella Typhimurium persistence relies on most of its effector proteins, crucial for bacterial survival within hosts. Deleting the CigR effector surprisingly increased lethality, indicating an anti-virulence role.
Area of Science:
- Microbiology
- Pathogenesis
- Bacterial Virulence
Background:
- Salmonella Typhimurium causes typhoid-like illness and is a model for human typhoid fever.
- Bacterial persistence, or long-term survival in the host, is a key feature of typhoid.
- Virulence factors called effectors are secreted into host cells to subvert cellular processes.
Purpose of the Study:
- To systematically evaluate the role of Salmonella Typhimurium effector proteins in bacterial persistence.
- To identify specific effectors essential for Salmonella's ability to survive within the host over time.
Main Methods:
- Utilized allelic exchange to create mutations in 48 described Salmonella effectors, replacing each with a unique DNA barcode.
- Performed competitive infections in mice, co-infecting with wild-type Salmonella and mutant strains.
- Quantified the ratio of wild-type to mutant bacteria over time using quantitative PCR to determine the competitive index (CI) for persistence.
Main Results:
- Mutations in all but seven of the 48 tested effectors significantly reduced Salmonella persistence.
- The effector CigR, conserved in enteric bacteria, was found to be dispensable for persistence.
- Deletion of cigR resulted in increased host lethality, suggesting an anti-virulence function.
Conclusions:
- The majority of Salmonella Typhimurium effectors are essential for bacterial persistence, challenging notions of functional redundancy.
- The findings highlight the critical role of numerous effector proteins in Salmonella's survival strategies within the host.
- CigR represents a potential anti-virulence factor, distinct from the general requirement for other effectors in persistence.

