Publication

Dispersal of Adult Culex Mosquitoes in an Urban West Nile Virus Hotspot: A Mark-Capture Study Incorporating Stable Isotope Enrichment of Natural Larval Habitats

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Last modified
  • 03/05/2025
Type of Material
Authors
    Gabriel L. Hamer, Michigan State UniversityTavis K. Anderson, Georgia Southern UniversityDanielle J. Donovan, Michigan State UniversityJeffrey D. Brawn, University of IllinoisBethany L. Krebs, University of IllinoisAllison M. Gardner, University of IllinoisMarilyn O. Ruiz, University of IllinoisWilliam M. Brown, University of IllinoisUriel Kitron, Emory UniversityChristina M. Newman, University of WisconsinTony L. Goldberg, University of WisconsinEdward D. Walker, Michigan State University
Language
  • English
Date
  • 2014-03-01
Publisher
  • Public Library of Science
Publication Version
Copyright Statement
  • © 2014 Hamer et al.
License
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 1935-2727
Volume
  • 8
Issue
  • 3
Start Page
  • e2768
End Page
  • e2768
Grant/Funding Information
  • This project was supported by the National Science Foundation and National Institutes of Health Ecology of Infectious Disease program under Award No. 084040, NIAID grant R37AI21884, and the Michigan Agricultural Experiment Station and the Agricultural Research Service, multistate project NE-507.
Abstract
  • Dispersal is a critical life history behavior for mosquitoes and is important for the spread of mosquito-borne disease. We implemented the first stable isotope mark-capture study to measure mosquito dispersal, focusing on Culex pipiens in southwest suburban Chicago, Illinois, a hotspot of West Nile virus (WNV) transmission. We enriched nine catch basins in 2010 and 2011 with 15 N-potassium nitrate and detected dispersal of enriched adult females emerging from these catch basins using CDC light and gravid traps to distances as far as 3 km. We detected 12 isotopically enriched pools of mosquitoes out of 2,442 tested during the two years and calculated a mean dispersal distance of 1.15 km and maximum flight range of 2.48 km. According to a logistic distribution function, 90% of the female Culex mosquitoes stayed within 3 km of their larval habitat, which corresponds with the distance-limited genetic variation of WNV observed in this study region. This study provides new insights on the dispersal of the most important vector of WNV in the eastern United States and demonstrates the utility of stable isotope enrichment for studying the biology of mosquitoes in other disease systems.
Author Notes
Keywords
Research Categories
  • Biology, Entomology
  • Biology, General
  • Environmental Sciences

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