Medical Journals

Fine-scale Population Genetic Structure of a Wildlife Disease Vector: the Southern House Mosquito on the Island of Hawaii.

Authors:
  • Keyghobadi Nusha
  • Lapointe Dennis
  • Fleischer Robert C
  • Fonseca Dina M

From: Genetics Program, 3001 Connecticut Ave. NW, Smithsonian Institution, Washington DC 20008, USA. nkeyghob@uwo.ca

Molecular ecology

  • Publish Date: Nov 2006
  • ISSN: 0962-1083
  • Volume: 15
  • Issue: 13
  • Pages: 3919-30
  • Medium: Print
  • Language: English
  • Citation (JAMA): Keyghobadi Nusha, Lapointe Dennis, Fleischer Robert C, et al. Fine-scale Population Genetic Structure of a Wildlife Disease Vector: the Southern House Mosquito on the Island of Hawaii.. Mol. Ecol. Nov 2006;15:3919-30

Abstract

The southern house mosquito, Culex quinquefasciatus, is a widespread tropical and subtropical disease vector. In the Hawaiian Islands, where it was introduced accidentally almost two centuries ago, it is considered the primary vector of avian malaria and pox. Avian malaria in particular has contributed to the extinction and endangerment of Hawaii’s native avifauna, and has altered the altitudinal distribution of native bird populations. We examined the population genetic structure of Cx. quinquefasciatus on the island of Hawaii at a smaller spatial scale than has previously been attempted, with particular emphasis on the effects of elevation on population genetic structure. We found significant genetic differentiation among populations and patterns of isolation by distance within the island. Elevation per se did not have a limiting effect on gene flow; however, there was significantly lower genetic diversity among populations at mid elevations compared to those at low elevations. A recent sample taken from just above the predicted upper altitudinal distribution of Cx. quinquefasciatus on the island of Hawaii was confirmed as being a temporary summer population and appeared to consist of individuals from more than one source population. Our results indicate effects of elevation gradients on genetic structure that are consistent with known effects of elevation on population dynamics of this disease vector.

Mesh Headings (Keywords): Animals, Culex, Gene Flow, Genetics, Population, Hawaii, Insect Vectors, Linkage Disequilibrium, Malaria, Avian, Variation (Genetics)


Check for Full Text / PubMed Unique Identifier (PMID): 17054493


This abstract is part of PubMed, a service of the U.S. National Library of Medicine. PubMed includes more than 17 million citations from MEDLINE and other life science journals for biomedical articles. See Copyright and Disclaimers.

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The data herein was last updated on July 8th, 2008 and may not reflect the most current and accurate data available from NLM.


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