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Geographic population structure of the African malaria vector Anopheles gambiae suggests a role for the forest-savannah biome transition as a barrier to gene flow

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dc.contributor.author Pinto, J
dc.contributor.author Egyir-Yawson, A
dc.contributor.author Vicente, J L
dc.contributor.author Gomes, B
dc.contributor.author Santolamazza, F
dc.contributor.author Moreno, M
dc.contributor.author Charlwood, J D
dc.contributor.author Simard, F
dc.contributor.author Elissa, N
dc.contributor.author Weetman, D
dc.contributor.author Donnelly, M J
dc.contributor.author Caccone, A
dc.contributor.author Della, Torre A
dc.date.accessioned 2021-06-28T14:39:57Z
dc.date.available 2021-06-28T14:39:57Z
dc.date.issued 2012
dc.identifier.issn 23105496
dc.identifier.uri http://hdl.handle.net/123456789/5539
dc.description 15p:, ill. en_US
dc.description.abstract The primary frotropical malaria mosquito vector Anopheles ambiae sensu stricto has a complex population structure. In West Africa, this species is split into two molecular forms and displays local and regional variation in chromosomal arrangements and behaviors. To investigate patterns of macro geographic population substructure, 25 An. Ambiae samples from 12 African countries were genotyped at 13 microsatellite loci. This analysis detected the presence of additional population structuring, with the M-form being subdivided into distinct west, central, and southern African genetic clusters. These clusters are coincident with the central African rainforest belt and northern and southern savannah biomes, which suggests restrictions to gene flow associated with the transition between these biomes. By contrast, geographically patterned population substructure appears much weaker within the S-form en_US
dc.language.iso en en_US
dc.publisher University of Cape Coast en_US
dc.title Geographic population structure of the African malaria vector Anopheles gambiae suggests a role for the forest-savannah biome transition as a barrier to gene flow en_US
dc.type Article en_US


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