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Updated: Jun 7, 2026

Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
Infectivity acts as in vivo selection for maintenance of the chlamydial cryptic plasmid
Marsha Russell1, Toni Darville, Kumar Chandra-Kuntal
1Department of Pediatrics, Children's Hospital of Pittsburgh of UPMC, One Children's Hospital Drive, 4401 Penn Avenue, Pittsburgh, PA 15224, USA.
Abstract:
Chlamydia trachomatis contains a conserved ∼7.5-kb plasmid. Loss of the plasmid results in reduced glycogen accumulation, failure to activate TLR2, and reduced infectivity. We hypothesized that reduced infectivity functions as a means of selection for plasmid maintenance. We directly examined the biological significance of the reduced infectivity associated with plasmid deficiency by determining the relative fitness of plasmid-deficient CM972 versus that of wild-type C. muridarum Nigg in mixed inocula in vitro and in vivo. C. muridarum Nigg rapidly out-competed its plasmid-cured derivative CM972 in vitro but was not competitive with CM3.1, a derivative of CM972 that has reverted to a normal infectivity phenotype. C. muridarum Nigg also effectively competed with CM972 during lower and upper genital tract infection in the mouse, demonstrating that strong selective pressure for plasmid maintenance occurs during infection. The severity of oviduct inflammation and dilatation resulting from these mixed infections correlated directly with the amount of C. muridarum Nigg in the initial inoculum, confirming the role of the plasmid in virulence. Genetic characterization of CM972 and CM3.1 revealed no additional mutations (other than loss of the plasmid) to account for the reduced infectivity of CM972 and detected a single base substitution in TC_0236 in CM3.1 that may be responsible for its restored infectivity. These data demonstrate that a chlamydial strain that differs genetically from its wild-type parent only with respect to the lack of the chlamydial plasmid is unable to compete in vitro and in vivo, likely explaining the rarity of plasmid-deficient isolates in nature.
Insights
Chlamydia trachomatis plasmid loss reduces infectivity, making plasmid-deficient strains uncompetitive. This explains why plasmid-carrying Chlamydia strains are rarely found in nature.
Area of Science:
- Microbiology
- Bacterial Genetics
- Infectious Diseases
Background:
- Chlamydia trachomatis possesses a conserved plasmid crucial for its survival.
- Plasmid loss in Chlamydia leads to decreased glycogen, impaired TLR2 activation, and reduced infectivity.
Purpose of the Study:
- To investigate the biological significance of reduced infectivity in plasmid-deficient Chlamydia.
- To determine the selective pressures favoring plasmid maintenance in Chlamydia trachomatis.
Main Methods:
- Comparative fitness assays of wild-type and plasmid-deficient Chlamydia strains in vitro and in vivo.
- Mixed inoculum infections in mouse genital tracts.
- Genetic characterization of plasmid-deficient and restored infectivity strains.
Main Results:
- Wild-type Chlamydia muridarum Nigg out-competed its plasmid-cured derivative (CM972) in vitro and in vivo.
- Plasmid-deficient CM972 was outcompeted during genital tract infections in mice.
- Oviduct inflammation severity correlated with the wild-type strain's initial inoculum amount.
- A single base substitution in TC_0236 may restore infectivity in CM3.1.
Conclusions:
- Reduced infectivity of plasmid-deficient Chlamydia strains results in poor competitiveness.
- Strong selective pressure favors plasmid maintenance during Chlamydia infection.
- The plasmid plays a significant role in Chlamydia virulence and fitness.
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