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Generation of Monoclonal Cultures from Wolbachia-infected Drosophila melanogaster JW18 Cell Line
Published on: June 27, 2025
Wolbachia-mediated antibacterial protection and immune gene regulation in Drosophila
Zhee Sheen Wong1, Lauren M Hedges, Jeremy C Brownlie
1School of Biological Sciences, The University of Queensland, Brisbane, Queensland, Australia.
Abstract:
The outcome of microbial infection of insects is dependent not only on interactions between the host and pathogen, but also on the interactions between microbes that co-infect the host. Recently the maternally inherited endosymbiotic bacteria Wolbachia has been shown to protect insects from a range of microbial and eukaryotic pathogens. Mosquitoes experimentally infected with Wolbachia have upregulated immune responses and are protected from a number of pathogens including viruses, bacteria, Plasmodium and filarial nematodes. It has been hypothesised that immune upregulation underpins Wolbachia-mediated protection. Drosophila is a strong model for understanding host-Wolbachia-pathogen interactions. Wolbachia-mediated antiviral protection in Drosophila has been demonstrated for a number of different Wolbachia strains. In this study we investigate whether Wolbachia-infected flies are also protected against pathogenic bacteria. Drosophila simulans lines infected with five different Wolbachia strains were challenged with the pathogenic bacteria Pseudomonas aeruginosa PA01, Serratia marcescens and Erwinia carotovora and mortality compared to paired lines without Wolbachia. No difference in mortality was observed in the flies with or without Wolbachia. Similarly no antibacterial protection was observed for D. melanogaster infected with Wolbachia. Interestingly, D. melanogaster Oregon RC flies which are naturally infected with Wolbachia showed no upregulation of the antibacterial immune genes TepIV, Defensin, Diptericin B, PGRP-SD, Cecropin A1 and Attacin D compared to paired flies without Wolbachia. Taken together these results indicate that Wolbachia-mediated antibacterial protection is not ubiquitous in insects and furthermore that the mechanisms of antibacterial and antiviral protection are independent. We suggest that the immune priming and antibacterial protection observed in Wolbachia-infected mosquitoes may be a consequence of the recent artificial introduction of the symbiont into insects that normally do not carry Wolbachia and that antibacterial protection is unlikely to be found in insects carrying long-term Wolbachia infections.
Insights
Wolbachia bacteria do not universally protect insects from bacterial infections. Studies in Drosophila found no antibacterial protection, suggesting this benefit may be specific to certain insect-pathogen combinations or recent symbiont introductions.
Area of Science:
- Microbial Pathogenesis
- Insect-Microbe Interactions
- Symbiosis
Background:
- The endosymbiotic bacteria Wolbachia can protect insects from various pathogens, with immune upregulation hypothesized as the mechanism.
- Antiviral protection mediated by Wolbachia has been observed in Drosophila, a model organism for host-pathogen studies.
Purpose of the Study:
- To investigate whether Wolbachia infection confers protection against pathogenic bacteria in Drosophila.
- To determine if Wolbachia-mediated antibacterial protection is a general phenomenon across insect species.
Main Methods:
- Drosophila simulans lines infected with five different Wolbachia strains were challenged with Pseudomonas aeruginosa, Serratia marcescens, and Erwinia carotovora.
- Mortality rates were compared between Wolbachia-infected and uninfected control fly lines.
- Antibacterial immune gene expression was analyzed in naturally Wolbachia-infected Drosophila melanogaster.
Main Results:
- No significant difference in mortality was observed between Wolbachia-infected and uninfected Drosophila simulans challenged with pathogenic bacteria.
- Wolbachia infection did not provide antibacterial protection in Drosophila melanogaster.
- Naturally infected Drosophila melanogaster showed no upregulation of key antibacterial immune genes.
Conclusions:
- Wolbachia-mediated antibacterial protection is not ubiquitous in insects and appears to be independent of antiviral protection mechanisms.
- Observed antibacterial protection in mosquitoes might be linked to recent Wolbachia introductions, not long-term host-symbiont associations.
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