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.

Insect Molecular Biology
|December 21, 2004
PubMed

Insights

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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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