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Published on: July 4, 2007
Infection patterns of o'nyong nyong virus in the malaria-transmitting mosquito, Anopheles gambiae
A C Brault1, B D Foy, K M Myles
1Division of Vector-Borne Infectious Diseases, Centers for Disease Control and Prevention, Fort Collins, CO 80522, USA.
Abstract:
Arthropod-borne alphaviruses transmitted by mosquitoes almost exclusively use culicines; however, the alphavirus o'nyong-nyong (ONNV) has the unusual characteristic of being transmitted primarily by anopheline mosquitoes. This unusual attribute makes ONNV a valuable tool in the characterization of mosquito determinants of infection as well as a useful expression system in Anopheles species. We developed a series of recombinant alphaviruses, based upon the genome of ONNV, designed for the expression of heterologous genes. The backbone genome is a full-length infectious cDNA clone of ONNV from which wild-type virus can be rescued. Additional constructs are variants of the primary clone and contain the complete genome plus a duplicated subgenomic promoter element with a multiple cloning site for insertion of heterologous genes. We inserted a green fluorescent protein (GFP) gene downstream of this promoter and used it to characterize infection and dissemination patterns of ONNV within An. gambiae mosquitoes. These experiments allowed us to identify atypical sites of initial infection and dissemination patterns in this mosquito species not frequently observed in comparable culicine infections. The utility of these ONNVs for studies in anopheline mosquitoes includes the potential for identification of vector infection determinants and to serve as tools for antimalaria studies. Viruses that can express a heterologous gene in a vector and rapidly and efficiently infect numerous tissues in An. gambiae mosquitoes will be a valuable asset in parasite-mosquito interaction and interference research.
Insights
O
Area of Science:
- Arthropod-borne viruses
- Mosquito vector biology
- Molecular virology
Background:
- Alphaviruses typically use culicine mosquitoes for transmission.
- O'nyong-nyong virus (ONNV) is an exception, primarily transmitted by anopheline mosquitoes.
- This unique trait makes ONNV valuable for studying mosquito-Anopheles interactions.
Purpose of the Study:
- To develop recombinant ONNVs for heterologous gene expression in Anopheles mosquitoes.
- To characterize ONNV infection and dissemination patterns in An. gambiae.
- To establish ONNV as a tool for vector competence studies and antimalaria research.
Main Methods:
- Created full-length infectious cDNA clones of ONNV.
- Engineered ONNV variants with duplicated subgenomic promoters for gene insertion.
- Inserted a green fluorescent protein (GFP) gene into the ONNV genome.
- Infected An. gambiae mosquitoes with recombinant ONNV-GFP to track infection.
Main Results:
- Successfully generated recombinant ONNVs capable of expressing heterologous genes.
- Identified atypical sites of ONNV initial infection and dissemination in An. gambiae.
- Demonstrated ONNV's ability to rapidly and efficiently infect multiple An. gambiae tissues.
Conclusions:
- Recombinant ONNVs are effective expression systems in Anopheles mosquitoes.
- ONNV facilitates the study of vector infection determinants and mosquito-specific infection patterns.
- ONNV-based tools hold potential for parasite-mosquito interaction research and antimalaria strategies.
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