High levels of population structure caused by habitat islands in the malarial vector Anopheles scanloni
- 11 April 2007
- journal article
- Published by Springer Nature in Heredity
- Vol. 99 (1) , 31-40
- https://doi.org/10.1038/sj.hdy.6800959
Abstract
The genetic structure of four populations of the malarial vector Anopheles scanloni in Thailand was studied using mitochondrial DNA sequences. Four highly divergent lineages were observed, all with signals of population expansion. Since An. scanloni is restricted to 'islands' of limestone karst habitat, this suggests there is a metapopulation-type dynamic in this species, with restricted gene flow, extinctions and drift all contributing to lineage divergence. Historical environmental change and marine transgressions may also have contributed to population extinction, expansion and divergence. Although there is some current gene flow inferred between nearby populations, it is extremely restricted between the northern and southern populations, which also differed by one fixed polymorphism at the ITS2 rDNA locus. Crossing experiments showed no post-mating barriers existing between the north and the south, but the lack of gene flow between these populations could ultimately result in speciation and has implications for malaria control strategies.Keywords
This publication has 50 references indexed in Scilit:
- Population Size Does Not Influence Mitochondrial Genetic Diversity in AnimalsScience, 2006
- Phylogeographic evidence for the existence of an ancient biogeographic barrier: the Isthmus of Kra SeawayHeredity, 2004
- Genetic divergence, population structure and historical demography of rare springsnails (Pyrgulopsis) in the lower Colorado River basinMolecular Ecology, 2004
- The Indochinese–Sundaic faunal transition at the Isthmus of Kra: an analysis of resident forest bird species distributionsJournal of Biogeography, 2003
- Neogene marine transgressions, palaeogeography and biogeographic transitions on the Thai–Malay PeninsulaJournal of Biogeography, 2003
- Theory and speciationTrends in Ecology & Evolution, 2001
- Populations of the south-west Pacific malaria vector Anopheles farauti s.s. revealed by ribosomal DNA transcribed spacer polymorphismsHeredity, 2000
- Polytene chromosome relationships of five species of the Anopheles dirus complex in ThailandGenome, 1995
- Metapopulation Dynamics and GeneticsAnnual Review of Ecology and Systematics, 1994
- Cytological differences and chromosomal rearrangements in four members of the Anopheles dirus complex (Diptera: Culicidae)Genome, 1988