Transcriptomic Analysis of Aedes aegypti Innate Immune System in Response to Ingestion of Chikungunya Virus

Int J Mol Sci. 2019 Jun 27;20(13):3133. doi: 10.3390/ijms20133133.

Abstract

Aedes aegypti (L.) is the primary vector of emergent mosquito-borne viruses, including chikungunya, dengue, yellow fever, and Zika viruses. To understand how these viruses interact with their mosquito vectors, an analysis of the innate immune system response was conducted. The innate immune system is a conserved evolutionary defense strategy and is the dominant immune system response found in invertebrates and vertebrates, as well as plants. RNA-sequencing analysis was performed to compare target transcriptomes of two Florida Ae. aegypti strains in response to chikungunya virus infection. We analyzed a strain collected from a field population in Key West, Florida, and a laboratory strain originating from Orlando. A total of 1835 transcripts were significantly expressed at different levels between the two Florida strains of Ae. aegypti. Gene Ontology analysis placed these genes into 12 categories of biological processes, including 856 transcripts (up/down regulated) with more than 1.8-fold (p-adj (p-adjust value) ≤ 0.01). Transcriptomic analysis and q-PCR data indicated that the members of the AaeCECH genes are important for chikungunya infection response in Ae. aegypti. These immune-related enzymes that the chikungunya virus infection induces may inform molecular-based strategies for interruption of arbovirus transmission by mosquitoes.

Keywords: Aedes aegypti; anti-microbial peptide; chikungunya virus; gene expression; immune responses; transcriptome.

MeSH terms

  • Aedes / genetics
  • Aedes / immunology*
  • Aedes / virology
  • Animals
  • Chikungunya virus / pathogenicity
  • Defensins / genetics
  • Defensins / metabolism
  • Immunity, Innate*
  • Insect Proteins / genetics
  • Insect Proteins / metabolism
  • Transcriptome*

Substances

  • Defensins
  • Insect Proteins