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Reciprocal Tripartite Interactions between the Aedes aegypti Midgut Microbiota, Innate Immune System and Dengue Virus Influences Vector Competence

PLoS neglected tropical diseases · 2012 · Vol. 6(3) · pp. e1561–e1561
José L. RamírezJayme A. Souza‐NetoRolando Torres CosmeJosé RoviraAlma OrtizJuan Miguel PascaleGeorge Dimopoulos

Abstract

Dengue virus is one of the most important arboviral pathogens and the causative agent of dengue fever, dengue hemorrhagic fever, and dengue shock syndrome. It is transmitted between humans by the mosquitoes Aedes aegypti and Aedes albopictus, and at least 2.5 billion people are at daily risk of infection. During their lifecycle, mosquitoes are exposed to a variety of microbes, some of which are needed for their successful development into adulthood. However, recent studies have suggested that the adult mosquito's midgut microflora is critical in influencing the transmission of human pathogens. In this study we assessed the reciprocal interactions between the mosquito's midgut microbiota and dengue virus infection that are, to a large extent, mediated by the mosquito's innate immune system. We observed a marked decrease in susceptibility to dengue virus infection when mosquitoes harbored certain field-derived bacterial isolates in their midgut. Transcript abundance analysis of selected antimicrobial peptide genes suggested that the mosquito's microbiota elicits a basal immune activity that appears to act against dengue virus infection. Conversely, the elicitation of the mosquito immune response by dengue virus infection itself influences the microbial load of the mosquito midgut. In sum, we show that the mosquito's microbiota influences dengue virus infection of the mosquito, which in turn activates its antibacterial responses.

Insect symbiosis and bacterial influencesMosquito-borne diseases and controlInsect and Pesticide ResearchAedes aegyptiBiologyDengue feverDengue virusMidgutAedes albopictusVirologyVirusAedesInnate immune system

MeSH terms

AedesAnimalsDengueDengue VirusDisease VectorsHumansImmunity, InnateGastrointestinal TractHost-Pathogen Interactions

Funding

  • American Society of Tropical Medicine and Hygiene
  • Johns Hopkins University
  • Ministerio de Salud
  • National Institutes of Health
  • Centers for Disease Control and Prevention
  • National Institute of Allergy and Infectious Diseases
Citations
415
FWCI
21.97
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
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