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Genomic diversification in strains of Rickettsia felis Isolated from different arthropods
Joseph J Gillespie1, Timothy P Driscoll2, Victoria I Verhoeve3
1Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, Maryland jgillespie@som.umaryland.edu.
Abstract:
Rickettsia felis (Alphaproteobacteria: Rickettsiales) is the causative agent of an emerging flea-borne rickettsiosis with worldwide occurrence. Originally described from the cat flea, Ctenocephalides felis, recent reports have identified R. felis from other flea species, as well as other insects and ticks. This diverse host range for R. felis may indicate an underlying genetic variability associated with host-specific strains. Accordingly, to determine a potential genetic basis for host specialization, we sequenced the genome of R. felis str. LSU-Lb, which is an obligate mutualist of the parthenogenic booklouse Liposcelis bostrychophila (Insecta: Psocoptera). We also sequenced the genome of R. felis str. LSU, the second genome sequence for cat flea-associated strains (cf. R. felis str. URRWXCal2), which are presumably facultative parasites of fleas. Phylogenomics analysis revealed R. felis str. LSU-Lb diverged from the flea-associated strains. Unexpectedly, R. felis str. LSU was found to be divergent from R. felis str. URRWXCal2, despite sharing similar hosts. Although all three R. felis genomes contain the pRF plasmid, R. felis str. LSU-Lb carries an additional unique plasmid, pLbaR (plasmid of L. bostrychophila associated Rickettsia), nearly half of which encodes a unique 23-gene integrative conjugative element. Remarkably, pLbaR also encodes a repeats-in-toxin-like type I secretion system and associated toxin, heretofore unknown from other Rickettsiales genomes, which likely originated from lateral gene transfer with another obligate intracellular parasite of arthropods, Cardinium (Bacteroidetes). Collectively, our study reveals unexpected genomic diversity across three R. felis strains and identifies several diversifying factors that differentiate facultative parasites of fleas from obligate mutualists of booklice.
Insights
Genomic analysis of Rickettsia felis reveals significant genetic diversity among strains, differentiating flea parasites from booklouse mutualists. This diversity is linked to unique plasmids and secretion systems, impacting host specialization.
Area of Science:
- Microbiology
- Genomics
- Evolutionary Biology
Background:
- Rickettsia felis causes emerging flea-borne rickettsiosis globally.
- R. felis has been found in various hosts beyond its original cat flea association, suggesting potential host specialization.
- Genetic variability may underlie R. felis's diverse host range.
Purpose of the Study:
- To investigate the genetic basis for host specialization in Rickettsia felis.
- To compare the genomes of R. felis strains with different host associations.
- To identify genetic factors contributing to host-specific R. felis strains.
Main Methods:
- Whole-genome sequencing of R. felis strains LSU-Lb (booklouse mutualist) and LSU (cat flea-associated).
- Phylogenomic analysis to determine evolutionary relationships.
- Comparative genomic analysis to identify unique genetic elements and potential lateral gene transfer.
Main Results:
- R. felis str. LSU-Lb diverged from flea-associated strains.
- R. felis str. LSU showed unexpected divergence from another cat flea-associated strain (URRWXCal2).
- The booklouse-associated strain LSU-Lb possesses a unique plasmid (pLbaR) encoding a novel type I secretion system, likely acquired via lateral gene transfer.
Conclusions:
- Significant genomic diversity exists among R. felis strains, correlating with host association.
- Unique plasmids and secretion systems contribute to the differentiation of flea parasites and booklouse mutualists.
- Lateral gene transfer plays a role in R. felis evolution and adaptation to different hosts.
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