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Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
Chlamydial plasmids and bacteriophages
Małgorzata Pawlikowska-Warych1, Joanna Śliwa-Dominiak1, Wiesław Deptuła1
1Department of Microbiology, Faculty of Biology, University of Szczecin, Szczecin, Poland.
Abstract:
Chlamydia are absolute pathogens of humans and animals; despite being rather well recognised, they are still open for discovery. One such discovery is the occurrence of extrachromosomal carriers of genetic information. In prokaryotes, such carriers include plasmids and bacteriophages, which are present only among some Chlamydia species. Plasmids were found exclusively in Chlamydia (C.) trachomatis, C. psittaci, C. pneumoniae, C. suis, C. felis, C. muridarum and C. caviae. In prokaryotic organisms, plasmids usually code for genes that facilitate survival of the bacteria in the environment (although they are not essential). In chlamydia, their role has not been definitely recognised, apart from the fact that they participate in the synthesis of glycogen and encode proteins responsible for their virulence. Furthermore, in C. suis it was evidenced that the plasmid is integrated in a genomic island and contains the tetracycline-resistance gene. Bacteriophages specific for chlamydia (chlamydiaphages) were detected only in six species: C. psittaci, C. abortus, C. felis, C. caviae C. pecorum and C. pneumoniae. These chlamydiaphages cause inhibition of the developmental cycle, and delay transformation of reticulate bodies (RBs) into elementary bodies (EBs), thus reducing the possibility of infecting other cells in time. Plasmids and bacteriophages can be used in the diagnostics of chlamydioses; although especially in the case of plasmids, they are already used for detection of chlamydial infections. In addition, bacteriophages could be used as therapeutic agents to replace antibiotics, potentially addressing the problem of increasing antibiotic-resistance among chlamydia.
Insights
Extrachromosomal elements like plasmids and bacteriophages are found in some Chlamydia species. These genetic carriers play roles in virulence and could be key for developing new diagnostics and therapies for chlamydial infections.
Area of Science:
- Microbiology
- Bacteriology
Background:
- Chlamydia are significant human and animal pathogens with ongoing research into their biology.
- Extrachromosomal genetic elements, plasmids and bacteriophages, are present in certain Chlamydia species.
Purpose of the Study:
- To investigate the presence and potential roles of plasmids and bacteriophages in Chlamydia species.
- To explore the diagnostic and therapeutic applications of these genetic elements.
Main Methods:
- Literature review and synthesis of existing data on Chlamydia plasmids and bacteriophages.
- Analysis of the genetic content and functional implications of these extrachromosomal elements.
Main Results:
- Plasmids are found in specific Chlamydia species (e.g., C. trachomatis, C. pneumoniae) and are implicated in glycogen synthesis and virulence.
- Chlamydiaphages are detected in species like C. psittaci and C. pneumoniae, affecting the Chlamydia developmental cycle.
- A plasmid in C. suis is integrated into a genomic island and confers tetracycline resistance.
Conclusions:
- Plasmids and bacteriophages represent important genetic components of Chlamydia with roles in pathogenesis.
- These elements hold potential for the development of novel diagnostic tools for chlamydioses.
- Bacteriophages offer a promising avenue for alternative therapeutics against antibiotic-resistant Chlamydia strains.
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