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Host Selection by Culex pipiens Mosquitoes and West Nile Virus Amplification

American Journal of Tropical Medicine and Hygiene · 2009 · Vol. 80(2) · pp. 268–278
Gabriel L. HamerUriel KitronTony L. GoldbergJeffrey D. BrawnScott R. LossMarilyn O. RuizDaniel B. HayesEdward D. Walker

Abstract

Recent field studies have suggested that the dynamics of West Nile virus (WNV) transmission are influenced strongly by a few key super spreader bird species that function both as primary blood hosts of the vector mosquitoes (in particular Culex pipiens) and as reservoir-competent virus hosts. It has been hypothesized that human cases result from a shift in mosquito feeding from these key bird species to humans after abundance of the key birds species decreases. To test this paradigm, we performed a mosquito blood meal analysis integrating host-feeding patterns of Cx. pipiens, the principal vector of WNV in the eastern United States north of the latitude 36 degrees N and other mosquito species with robust measures of host availability, to determine host selection in a WNV-endemic area of suburban Chicago, Illinois, during 2005-2007. Results showed that Cx. pipiens fed predominantly (83%) on birds with a high diversity of species used as hosts (25 species). American robins (Turdus migratorius) were marginally overused and several species were underused on the basis of relative abundance measures, including the common grackle (Quiscalus quiscula), house sparrow (Passer domesticus), and European starling (Sturnus vulgaris). Culex pipiens also fed substantially on mammals (19%; 7 species with humans representing 16%). West Nile virus transmission intensified in July of both years at times when American robins were heavily fed upon, and then decreased when robin abundance decreased, after which other birds species were selected as hosts. There was no shift in feeding from birds to mammals coincident with emergence of human cases. Rather, bird feeding predominated when the onset of the human cases occurred. Measures of host abundance and competence and Cx. pipiens feeding preference were combined to estimate the amplification fractions of the different bird species. Predictions were that approximately 66% of WNV-infectious Cx. pipiens became infected from feeding on just a few species of birds, including American robins (35%), blue jays (17%, Cyanocitta cristata), and house finches (15%, Carpodacus mexicanus).

Mosquito-borne diseases and controlViral Infections and VectorsVector-borne infectious diseasesSparrowSturnusCulex pipiensBiologyHost (biology)CulexZoologyVector (molecular biology)StarlingAbundance (ecology)

MeSH terms

AnimalsBird DiseasesBloodCulexFeeding BehaviorHumansInsect VectorsSpecies SpecificityWest Nile FeverWest Nile virusPasseriformesHost-Pathogen Interactions
Citations
394
FWCI
24.54
field-weighted impact
References
54
Percentile
100%
vs. same field & year
Citations per year
References
Biodiversity and Disease Risk: the Case of Lyme Disease
Conservation Biology · 2000 · 721 citations
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