Climate change impacts on West Nile virus transmission in a global context

Philos Trans R Soc Lond B Biol Sci. 2015 Apr 5;370(1665):20130561. doi: 10.1098/rstb.2013.0561.

Abstract

West Nile virus (WNV), the most widely distributed virus of the encephalitic flaviviruses, is a vector-borne pathogen of global importance. The transmission cycle exists in rural and urban areas where the virus infects birds, humans, horses and other mammals. Multiple factors impact the transmission and distribution of WNV, related to the dynamics and interactions between pathogen, vector, vertebrate hosts and environment. Hence, among other drivers, weather conditions have direct and indirect influences on vector competence (the ability to acquire, maintain and transmit the virus), on the vector population dynamic and on the virus replication rate within the mosquito, which are mostly weather dependent. The importance of climatic factors (temperature, precipitation, relative humidity and winds) as drivers in WNV epidemiology is increasing under conditions of climate change. Indeed, recent changes in climatic conditions, particularly increased ambient temperature and fluctuations in rainfall amounts, contributed to the maintenance (endemization process) of WNV in various locations in southern Europe, western Asia, the eastern Mediterranean, the Canadian Prairies, parts of the USA and Australia. As predictions show that the current trends are expected to continue, for better preparedness, any assessment of future transmission of WNV should take into consideration the impacts of climate change.

Keywords: West Nile virus; climate change; vector-borne diseases.

Publication types

  • Review

MeSH terms

  • Animals
  • Climate Change
  • Culicidae / physiology*
  • Global Health
  • Humans
  • Insect Vectors / physiology*
  • West Nile Fever / epidemiology
  • West Nile Fever / transmission*
  • West Nile Fever / virology
  • West Nile virus / physiology*