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The relative importance of innate immune priming in Wolbachia-mediated dengue interference
Edwige Rancès1, Yixin H Ye, Megan Woolfit
1School of Biological Sciences, Monash University, Clayton, Australia.
Abstract:
The non-virulent Wolbachia strain wMel and the life-shortening strain wMelPop-CLA, both originally from Drosophila melanogaster, have been stably introduced into the mosquito vector of dengue fever, Aedes aegypti. Each of these Wolbachia strains interferes with viral pathogenicity and/or dissemination in both their natural Drosophila host and in their new mosquito host, and it has been suggested that this virus interference may be due to host immune priming by Wolbachia. In order to identify aspects of the mosquito immune response that might underpin virus interference, we used whole-genome microarrays to analyse the transcriptional response of A. aegypti to the wMel and wMelPop-CLA Wolbachia strains. While wMel affected the transcription of far fewer host genes than wMelPop-CLA, both strains activated the expression of some immune genes including anti-microbial peptides, Toll pathway genes and genes involved in melanization. Because the induction of these immune genes might be associated with the very recent introduction of Wolbachia into the mosquito, we also examined the same Wolbachia strains in their original host D. melanogaster. First we demonstrated that when dengue viruses were injected into D. melanogaster, virus accumulation was significantly reduced in the presence of Wolbachia, just as in A. aegypti. Second, when we carried out transcriptional analyses of the same immune genes up-regulated in the new heterologous mosquito host in response to Wolbachia we found no over-expression of these genes in D. melanogaster, infected with either wMel or wMelPop. These results reinforce the idea that the fundamental mechanism involved in viral interference in Drosophila and Aedes is not dependent on the up-regulation of the immune effectors examined, although it cannot be excluded that immune priming in the heterologous mosquito host might enhance the virus interference trait.
Insights
Wolbachia bacteria were introduced into Aedes aegypti mosquitoes to fight dengue virus. While Wolbachia activated some immune genes in mosquitoes, this immune priming was not observed in Drosophila melanogaster, suggesting it
Area of Science:
- Microbiology and Immunology
- Vector-borne Disease Control
- Genomics
Background:
- Wolbachia bacteria, naturally found in Drosophila melanogaster, have been introduced into Aedes aegypti mosquitoes, a vector for dengue fever.
- Both non-virulent (wMel) and life-shortening (wMelPop-CLA) Wolbachia strains reduce viral pathogenicity and dissemination in their hosts.
- Virus interference by Wolbachia may be linked to host immune priming.
Purpose of the Study:
- To investigate the mosquito immune response to Wolbachia.
- To identify host genes involved in Wolbachia-mediated virus interference.
- To compare the immune response in Aedes aegypti and Drosophila melanogaster.
Main Methods:
- Whole-genome microarrays were used to analyze gene transcription in Aedes aegypti infected with wMel or wMelPop-CLA Wolbachia.
- Dengue virus accumulation was measured in Wolbachia-infected and uninfected Drosophila melanogaster.
- Transcriptional analysis of immune genes was performed in Wolbachia-infected Drosophila melanogaster.
Main Results:
- Wolbachia infection, particularly wMelPop-CLA, altered the transcription of numerous immune genes in Aedes aegypti, including antimicrobial peptides and Toll pathway genes.
- Wolbachia significantly reduced dengue virus accumulation in Drosophila melanogaster.
- No significant up-regulation of the same immune genes was observed in Wolbachia-infected Drosophila melanogaster compared to Aedes aegypti.
Conclusions:
- The fundamental mechanism of virus interference by Wolbachia in both Drosophila and Aedes is not solely dependent on the up-regulation of the specific immune effectors examined.
- Immune priming in the heterologous mosquito host might contribute to, but is not the sole driver of, the virus interference trait.
- Further research is needed to fully elucidate the mechanisms of Wolbachia-mediated antiviral immunity.
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