Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

West Nile virus in Tunisia, 2014: First isolation from mosquitoes

Domaine:

healthcare

Type de record:

paper
Créateur:
WasDacCheBos
Éditeur:
LabPubUniThi
Éditeur:
CCSDElsevier
Hôte:avatar
International audience Several outbreaks of human West Nile virus (WNV) infections were reported in Tunisia during the last two decades. Serological studies on humans as well as on equine showed intensive circulation of WNV in Tunisia. However, no virus screening of mosquitoes for WNV has been performed in Tunisia. In the present study, we collected mosquito samples from Central Tunisia to be examined for the presence of flaviviruses. A total of 102 Culex pipiens mosquitoes were collected in September 2014 from Central Tunisia. Mosquitoes were pooled according to the collection site, date and sex with a maximum of 5 specimens per pool and tested for the presence of flaviviruses by conventional reverse transcription heminested PCR and by a specific West Nile virus real time reverse transcription PCR. Of a total of 21 pools tested, 7 were positive for WNV and no other flavivirus could be evidenced in mosquito pools. In addition, WNV was isolated on Vero cells. Phylogenetic analysis showed that recent Tunisian WNV strains belong to lineage 1 WNV and are closely related to the Tunisian strain 1997 (PAH 001). This is the first detection and isolation of WNV from mosquitoes in Tunisia. Some areas of Tunisia are at high risk for human WNV infections. WNV is likely to cause future sporadic and foreseeable outbreaks. Therefore, it is of major epidemiological importance to set up an entomological surveillance as an early alert system. Timely detection of WNV should prompt vector control to prevent future outbreaks. In addition, education of people to protect themselves from mosquito bites is of major epidemiological importance as preventive measure against WNV infection.

Visit

riip.hal.science

Tags

West Nile virusNorth AfricaFlavivirusesEmergingCulex mosquitoesMESH: AnimalsMESH: Culex/virology*MESH: Disease VectorsMESH: HumansMESH: Phylogeny*+6

Similaires

Yata Virus (Family Rhabdoviridae, Genus Ephemerovirus) Isolation from Mosquitoes from Uganda, the First Reported Isolation since 1969Serosurvey of West Nile virus in horses and detection of West Nile virus antigen in mosquitoes in Kaduna State, NigeriaEvidence of circulation of West Nile virus in Culex pipiens mosquitoes and horses in MoroccoFirst Detection of the West Nile Virus Koutango Lineage in Sandflies in NigerWest Nile virus bayesian phylogeographyA sero-epidemiological investigation of West Nile virus among patients without any records of their symptoms from three different hospitals from Tunisia

Yata Virus (Family Rhabdoviridae, Genus Ephemerovirus) Isolation from Mosquitoes from Uganda, the First Reported Isolation since 1969

As a part of a systematic study of mosquitoes and associated viruses in Uganda, a virus was isolated

Serosurvey of West Nile virus in horses and detection of West Nile virus antigen in mosquitoes in Kaduna State, Nigeria

Evidence of circulation of West Nile virus in Culex pipiens mosquitoes and horses in Morocco

International audience West Nile virus (WNV) is one of the most widely distributed mo

First Detection of the West Nile Virus Koutango Lineage in Sandflies in Niger

West Nile virus (WNV), belonging to the Flaviviridae family, causes a mosquito-borne disease and sho

West Nile virus bayesian phylogeography

Phylogeographic inference and molecular clock analysis of WNV Lineages 1 and 2 uncover the viral

A sero-epidemiological investigation of West Nile virus among patients without any records of their symptoms from three different hospitals from Tunisia