- Title
- Worldwide patterns of genetic differentiation imply multiple ‘domestications’ of Aedes aegypti , a major vector of human diseases
- Creators - without role
- Christophe Paupy - Institut de Recherche pour le DéveloppementJulia BrownCarolyn Mcbride - Rockefeller UniversityPetrina Johnson - James Cook UniversityScott Ritchie - James Cook UniversityHervé Bossin - Institut Louis MalardéJoel Lutomiah - Kenya Medical Research InstituteIldefonso Fernandez-Salas - Universidad Autónoma de Nuevo LeónAlongkot Ponlawat - Armed Forces Research Institute of Medical ScienceAnthony Cornel - University of California, DavisWilliam Black - Colorado State UniversityNorma Gorrochotegui-Escalante - Colorado State UniversityLudmel Urdaneta-Marquez - Colorado State UniversityMassamba Sylla - Colorado State UniversityMichel Slotman - Texas A&M UniversityKristy Murray - The University of Texas Health Science Center at HoustonChristopher Walker - The University of Texas Health Science Center at HoustonJeffrey Powell - Yale University
- Publication Details
- Proceedings of the Royal Society B: Biological Sciences, Vol.278(1717), pp.2446-2454
- Identifiers
- 9946945509311
- Academic Unit
- Maladies Infectieuses et Vecteurs : Ecologie, Génétique, Evolution et Contrôle - MIVEGEC
- Language
- English
- Resource Type
- Journal article
- Local Fields
- hal-03002480
Journal article
Worldwide patterns of genetic differentiation imply multiple ‘domestications’ of Aedes aegypti , a major vector of human diseases
Proceedings of the Royal Society B: Biological Sciences, Vol.278(1717), pp.2446-2454
22/08/2011
PMCID: PMC3125627
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