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Global genetic diversity of Aedes aegypti

Andrea Gloria‐Soria; Diego Ayala; Ambicadutt Bheecarry; Olger Calderon‐Arguedas; Dave D. Chadee; Marina Chiappero; Maureen Coetzee; Khouaildi Bin Elahee; Ildefonso Fernandez‐Salas; Hany A. Kamal; Basile Kamgang; Emad I. M. Khater; Laura D. Kramer; Vicki Kramer; Alma Lopez‐Solis; Joel Lutomiah; Ademir Martins; Maria Victoria Micieli; Christophe Paupy; Alongkot Ponlawat; Nil Rahola; Syed Basit Rasheed; Joshua B. Richardson; Amag A. Saleh; Rosa Maria Sanchez‐Casas; Gonçalo Seixas; Carla A. Sousa; Walter J. Tabachnick; Adriana Troyo; Jeffrey R. Powell
Molecular Ecology · Vol. 25, Issue 21 · pp. 5377-5395 · 2016

Abstract

Mosquitoes, especially Aedes aegypti , are becoming important models for studying invasion biology. We characterized genetic variation at 12 microsatellite loci in 79 populations of Ae. aegypti from 30 countries in six continents, and used them to infer historical and modern patterns of invasion. Our results support the two subspecies Ae. aegypti formosus and Ae. aegypti aegypti as genetically distinct units. Ae. aegypti aegypti populations outside Africa are derived from ancestral African populations and are monophyletic. The two subspecies co‐occur in both East Africa (Kenya) and West Africa (Senegal). In rural/forest settings (Rabai District of Kenya), the two subspecies remain genetically distinct, whereas in urban settings, they introgress freely. Populations outside Africa are highly genetically structured likely due to a combination of recent founder effects, discrete discontinuous habitats and low migration rates. Ancestral populations in sub‐Saharan Africa are less genetically structured, as are the populations in Asia. Introduction of Ae. aegypti to the New World coinciding with trans‐Atlantic shipping in the 16th to 18th centuries was followed by its introduction to Asia in the late 19th century from the New World or from now extinct populations in the Mediterranean Basin. Aedes mascarensis is a genetically distinct sister species to Ae. aegypti s.l. This study provides a reference database of genetic diversity that can be used to determine the likely origin of new introductions that occur regularly for this invasive species. The genetic uniqueness of many populations and regions has important implications for attempts to control Ae. aegypti , especially for the methods using genetic modification of populations.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2016-11-01
Publication Year2016
Volume25
Issue21
Pages5377-5395
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.13866
SubjectEcology & Organismal Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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