Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA
Autor(a) principal: | |
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Data de Publicação: | 2022 |
Outros Autores: | , , , , , , , , , , , , , , , |
Tipo de documento: | Artigo |
Idioma: | eng |
Título da fonte: | Repositório Institucional da FIOCRUZ (ARCA) |
Texto Completo: | https://www.arca.fiocruz.br/handle/icict/56253 |
Resumo: | Center for Vector Biology & Zoonotic Diseases, Department of Entomology, The Connecticut Agricultural Experiment Station, 123 Huntington St. New Haven, CT 06504 USA / Department of Ecology and Evolutionary Biology, Yale University, 21 Sachem Street, New Haven, CT 06520-8105 USA. |
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Gloria-Soria, AndreaShragai, TalyaCiota, Alexander Т.Duval, Todd B.Alto, Barry W.Martins, Ademir J.Westby, Kathleen M.Medley, Kim A.Unlu, IsikCampbell, Scott R.Kawalkowski, MalgorzataTsuda, YoshioHiga, YukikoIndelicato, NicholasLeisnham, Paul T.Caccone, AdalgisaArmstrong, Philip M.2023-01-03T09:54:37Z2023-01-03T09:54:37Z2022GLORIA-SORIA, Andrea et al. Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota, v. 78, p. 99-127, 2022.1314-2488https://www.arca.fiocruz.br/handle/icict/5625310.3897/neobiota.78.84986engPensoftMosquito tigre asiáticoColonizaçãoCriador de contêineresGenética de invasãoPressão de propáguloExpansão de alcanceAsian tiger mosquitoColonizationContainer-breederInvasion geneticsPropagule pressureRange expansionPopulation genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USAinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleCenter for Vector Biology & Zoonotic Diseases, Department of Entomology, The Connecticut Agricultural Experiment Station, 123 Huntington St. New Haven, CT 06504 USA / Department of Ecology and Evolutionary Biology, Yale University, 21 Sachem Street, New Haven, CT 06520-8105 USA.Cornell University, Department of Entomology, 2126 Comstock Hall, Ithaca, NY 14853 USA.Arbovirus Laboratory, Wadsworth Center, New York State Department of Health, 5668 State Farm Road, Slingerlands, NY 12159, USA.Bristol County Mosquito Control Project, 38R Forest Street, Attleboro, MA 02703 USA.University of Florida, IFAS, Department of Entomology and Nematology, Florida Medical Entomology Laboratory, Vero Beach, FL 32962 USA.Fundação Oswaldo Cruz. Instituto Oswaldo Cruz. Rio de Janeiro, RJ, Brasil / Instituto Nacional de Ciência e Tecnologia em Entomologia Molecular, Rio de Janeiro, RJ, Brasil.Tyson Research Center, Washington University in Saint Louis, 6750 Tyson Valley Rd, Eureka, MO 63025 USA.Tyson Research Center, Washington University in Saint Louis, 6750 Tyson Valley Rd, Eureka, MO 63025 USA.Miami-Dade Mosquito Control Division, 8901 NW 58 St., Miami, FL 33178, USA.Arthropod-Borne Disease Laboratory, Suffolk County Department of Health Services, Yaphank, NY, USA.Division of Vector Control, Suffolk County Department of Health Services, Yaphank, NY, USA.Department of Medical Entomology, National Institute of Infectious Diseases, Toyama 1-23-1, Shinjuku-ku, Tokyo 162-8640, Japan.Department of Medical Entomology, National Institute of Infectious Diseases, Toyama 1-23-1, Shinjuku-ku, Tokyo 162-8640, Japan.D.O.T. & I / Highway Division, Mercer County, Ewing, NJ USA.Department of Environmental Science & Technology, University of Maryland, College Park MD 20742 USA.Department of Ecology and Evolutionary Biology, Yale University, 21 Sachem Street, New Haven, CT 06520-8105 USA.Center for Vector Biology & Zoonotic Diseases, Department of Entomology, The Connecticut Agricultural Experiment Station, 123 Huntington St. New Haven, CT 06504 USA.The Asian tiger mosquito (Aedes albopictus) arrived in the USA in the 1980’s and rapidly spread throughout eastern USA within a decade. The predicted northern edge of its overwintering distribution on the East Coast of the USA roughly falls across New York, Connecticut, and Massachusetts, where the species has been recorded as early as 2000. It is unclear whether Ae. albopictus populations have become established and survive the cold winters in these areas or are recolonized every year. We genotyped and analyzed populations of Ae. albopictus from the northeast USA using 15 microsatellite markers and compared them with other populations across the country and to representatives of the major global genetic clades to investigate their connectivity and stability. Founder effects or bottlenecks were rare at the northern range of the Ae. albopictus distribution in the northeastern USA, with populations displaying high levels of genetic diversity and connectivity along the East Coast. There is no evidence of population turnover in Connecticut during the course of three consecutive years, with consistent genetic structure throughout this period. Overall, these results support the presence of established populations of Ae. albopictus in New York, Connecticut, and Massachusetts, successfully overwintering and migrating in large numbers. Given the stability and interconnectedness of these populations, Ae. albopictus has the potential to continue to proliferate and expand its range northward under mean warming conditions of climate change. Efforts to control Ae. albopictus in these areas should thus focus on vector suppression rather than eradication strategies, as local populations have become firmly established and are expected to reemerge every summer.info:eu-repo/semantics/openAccessreponame:Repositório Institucional da FIOCRUZ (ARCA)instname:Fundação Oswaldo Cruz (FIOCRUZ)instacron:FIOCRUZLICENSElicense.txtlicense.txttext/plain; charset=utf-82991https://www.arca.fiocruz.br/bitstream/icict/56253/1/license.txt5a560609d32a3863062d77ff32785d58MD51ORIGINALAdemirJ_Martins_etal_IOC_2022.pdfAdemirJ_Martins_etal_IOC_2022.pdfapplication/pdf2645765https://www.arca.fiocruz.br/bitstream/icict/56253/2/AdemirJ_Martins_etal_IOC_2022.pdf8bd5e55ea19b1d26188e72b1011040ffMD52icict/562532023-09-04 11:03:29.358oai:www.arca.fiocruz.br:icict/56253Q0VTU8ODTyBOw4NPIEVYQ0xVU0lWQSBERSBESVJFSVRPUyBBVVRPUkFJUwoKQW8gYWNlaXRhciBvcyBURVJNT1MgZSBDT05EScOHw5VFUyBkZXN0YSBDRVNTw4NPLCBvIEFVVE9SIGUvb3UgVElUVUxBUiBkZSBkaXJlaXRvcwphdXRvcmFpcyBzb2JyZSBhIE9CUkEgZGUgcXVlIHRyYXRhIGVzdGUgZG9jdW1lbnRvOgoKKDEpIENFREUgZSBUUkFOU0ZFUkUsIHRvdGFsIGUgZ3JhdHVpdGFtZW50ZSwgw6AgRklPQ1JVWiAtIEZVTkRBw4fDg08gT1NXQUxETyBDUlVaLCBlbQpjYXLDoXRlciBwZXJtYW5lbnRlLCBpcnJldm9nw6F2ZWwgZSBOw4NPIEVYQ0xVU0lWTywgdG9kb3Mgb3MgZGlyZWl0b3MgcGF0cmltb25pYWlzIE7Dg08KQ09NRVJDSUFJUyBkZSB1dGlsaXphw6fDo28gZGEgT0JSQSBhcnTDrXN0aWNhIGUvb3UgY2llbnTDrWZpY2EgaW5kaWNhZGEgYWNpbWEsIGluY2x1c2l2ZSBvcyBkaXJlaXRvcwpkZSB2b3ogZSBpbWFnZW0gdmluY3VsYWRvcyDDoCBPQlJBLCBkdXJhbnRlIHRvZG8gbyBwcmF6byBkZSBkdXJhw6fDo28gZG9zIGRpcmVpdG9zIGF1dG9yYWlzLCBlbQpxdWFscXVlciBpZGlvbWEgZSBlbSB0b2RvcyBvcyBwYcOtc2VzOwoKKDIpIEFDRUlUQSBxdWUgYSBjZXNzw6NvIHRvdGFsIG7Do28gZXhjbHVzaXZhLCBwZXJtYW5lbnRlIGUgaXJyZXZvZ8OhdmVsIGRvcyBkaXJlaXRvcyBhdXRvcmFpcwpwYXRyaW1vbmlhaXMgbsOjbyBjb21lcmNpYWlzIGRlIHV0aWxpemHDp8OjbyBkZSBxdWUgdHJhdGEgZXN0ZSBkb2N1bWVudG8gaW5jbHVpLCBleGVtcGxpZmljYXRpdmFtZW50ZSwKb3MgZGlyZWl0b3MgZGUgZGlzcG9uaWJpbGl6YcOnw6NvIGUgY29tdW5pY2HDp8OjbyBww7pibGljYSBkYSBPQlJBLCBlbSBxdWFscXVlciBtZWlvIG91IHZlw61jdWxvLAppbmNsdXNpdmUgZW0gUmVwb3NpdMOzcmlvcyBEaWdpdGFpcywgYmVtIGNvbW8gb3MgZGlyZWl0b3MgZGUgcmVwcm9kdcOnw6NvLCBleGliacOnw6NvLCBleGVjdcOnw6NvLApkZWNsYW1hw6fDo28sIHJlY2l0YcOnw6NvLCBleHBvc2nDp8OjbywgYXJxdWl2YW1lbnRvLCBpbmNsdXPDo28gZW0gYmFuY28gZGUgZGFkb3MsIHByZXNlcnZhw6fDo28sIGRpZnVzw6NvLApkaXN0cmlidWnDp8OjbywgZGl2dWxnYcOnw6NvLCBlbXByw6lzdGltbywgdHJhZHXDp8OjbywgZHVibGFnZW0sIGxlZ2VuZGFnZW0sIGluY2x1c8OjbyBlbSBub3ZhcyBvYnJhcyBvdQpjb2xldMOibmVhcywgcmV1dGlsaXphw6fDo28sIGVkacOnw6NvLCBwcm9kdcOnw6NvIGRlIG1hdGVyaWFsIGRpZMOhdGljbyBlIGN1cnNvcyBvdSBxdWFscXVlciBmb3JtYSBkZQp1dGlsaXphw6fDo28gbsOjbyBjb21lcmNpYWw7CgooMykgUkVDT05IRUNFIHF1ZSBhIGNlc3PDo28gYXF1aSBlc3BlY2lmaWNhZGEgY29uY2VkZSDDoCBGSU9DUlVaIC0gRlVOREHDh8ODTyBPU1dBTERPCkNSVVogbyBkaXJlaXRvIGRlIGF1dG9yaXphciBxdWFscXVlciBwZXNzb2Eg4oCTIGbDrXNpY2Egb3UganVyw61kaWNhLCBww7pibGljYSBvdSBwcml2YWRhLCBuYWNpb25hbCBvdQplc3RyYW5nZWlyYSDigJMgYSBhY2Vzc2FyIGUgdXRpbGl6YXIgYW1wbGFtZW50ZSBhIE9CUkEsIHNlbSBleGNsdXNpdmlkYWRlLCBwYXJhIHF1YWlzcXVlcgpmaW5hbGlkYWRlcyBuw6NvIGNvbWVyY2lhaXM7CgooNCkgREVDTEFSQSBxdWUgYSBvYnJhIMOpIGNyaWHDp8OjbyBvcmlnaW5hbCBlIHF1ZSDDqSBvIHRpdHVsYXIgZG9zIGRpcmVpdG9zIGFxdWkgY2VkaWRvcyBlIGF1dG9yaXphZG9zLApyZXNwb25zYWJpbGl6YW5kby1zZSBpbnRlZ3JhbG1lbnRlIHBlbG8gY29udGXDumRvIGUgb3V0cm9zIGVsZW1lbnRvcyBxdWUgZmF6ZW0gcGFydGUgZGEgT0JSQSwKaW5jbHVzaXZlIG9zIGRpcmVpdG9zIGRlIHZveiBlIGltYWdlbSB2aW5jdWxhZG9zIMOgIE9CUkEsIG9icmlnYW5kby1zZSBhIGluZGVuaXphciB0ZXJjZWlyb3MgcG9yCmRhbm9zLCBiZW0gY29tbyBpbmRlbml6YXIgZSByZXNzYXJjaXIgYSBGSU9DUlVaIC0gRlVOREHDh8ODTyBPU1dBTERPIENSVVogZGUKZXZlbnR1YWlzIGRlc3Blc2FzIHF1ZSB2aWVyZW0gYSBzdXBvcnRhciwgZW0gcmF6w6NvIGRlIHF1YWxxdWVyIG9mZW5zYSBhIGRpcmVpdG9zIGF1dG9yYWlzIG91CmRpcmVpdG9zIGRlIHZveiBvdSBpbWFnZW0sIHByaW5jaXBhbG1lbnRlIG5vIHF1ZSBkaXogcmVzcGVpdG8gYSBwbMOhZ2lvIGUgdmlvbGHDp8O1ZXMgZGUgZGlyZWl0b3M7CgooNSkgQUZJUk1BIHF1ZSBjb25oZWNlIGEgUG9sw610aWNhIEluc3RpdHVjaW9uYWwgZGUgQWNlc3NvIEFiZXJ0byBkYSBGSU9DUlVaIC0gRlVOREHDh8ODTwpPU1dBTERPIENSVVogZSBhcyBkaXJldHJpemVzIHBhcmEgbyBmdW5jaW9uYW1lbnRvIGRvIHJlcG9zaXTDs3JpbyBpbnN0aXR1Y2lvbmFsIEFSQ0EuCgpBIFBvbMOtdGljYSBJbnN0aXR1Y2lvbmFsIGRlIEFjZXNzbyBBYmVydG8gZGEgRklPQ1JVWiAtIEZVTkRBw4fDg08gT1NXQUxETyBDUlVaIHJlc2VydmEKZXhjbHVzaXZhbWVudGUgYW8gQVVUT1Igb3MgZGlyZWl0b3MgbW9yYWlzIGUgb3MgdXNvcyBjb21lcmNpYWlzIHNvYnJlIGFzIG9icmFzIGRlIHN1YSBhdXRvcmlhCmUvb3UgdGl0dWxhcmlkYWRlLCBzZW5kbyBvcyB0ZXJjZWlyb3MgdXN1w6FyaW9zIHJlc3BvbnPDoXZlaXMgcGVsYSBhdHJpYnVpw6fDo28gZGUgYXV0b3JpYSBlIG1hbnV0ZW7Dp8OjbwpkYSBpbnRlZ3JpZGFkZSBkYSBPQlJBIGVtIHF1YWxxdWVyIHV0aWxpemHDp8Ojby4KCkEgUG9sw610aWNhIEluc3RpdHVjaW9uYWwgZGUgQWNlc3NvIEFiZXJ0byBkYSBGSU9DUlVaIC0gRlVOREHDh8ODTyBPU1dBTERPIENSVVoKcmVzcGVpdGEgb3MgY29udHJhdG9zIGUgYWNvcmRvcyBwcmVleGlzdGVudGVzIGRvcyBBdXRvcmVzIGNvbSB0ZXJjZWlyb3MsIGNhYmVuZG8gYW9zIEF1dG9yZXMKaW5mb3JtYXIgw6AgSW5zdGl0dWnDp8OjbyBhcyBjb25kacOnw7VlcyBlIG91dHJhcyByZXN0cmnDp8O1ZXMgaW1wb3N0YXMgcG9yIGVzdGVzIGluc3RydW1lbnRvcy4KRepositório InstitucionalPUBhttps://www.arca.fiocruz.br/oai/requestrepositorio.arca@fiocruz.bropendoar:21352023-09-04T14:03:29Repositório Institucional da FIOCRUZ (ARCA) - 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dc.title.en_US.fl_str_mv |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
title |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
spellingShingle |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA Gloria-Soria, Andrea Mosquito tigre asiático Colonização Criador de contêineres Genética de invasão Pressão de propágulo Expansão de alcance Asian tiger mosquito Colonization Container-breeder Invasion genetics Propagule pressure Range expansion |
title_short |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
title_full |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
title_fullStr |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
title_full_unstemmed |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
title_sort |
Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA |
author |
Gloria-Soria, Andrea |
author_facet |
Gloria-Soria, Andrea Shragai, Talya Ciota, Alexander Т. Duval, Todd B. Alto, Barry W. Martins, Ademir J. Westby, Kathleen M. Medley, Kim A. Unlu, Isik Campbell, Scott R. Kawalkowski, Malgorzata Tsuda, Yoshio Higa, Yukiko Indelicato, Nicholas Leisnham, Paul T. Caccone, Adalgisa Armstrong, Philip M. |
author_role |
author |
author2 |
Shragai, Talya Ciota, Alexander Т. Duval, Todd B. Alto, Barry W. Martins, Ademir J. Westby, Kathleen M. Medley, Kim A. Unlu, Isik Campbell, Scott R. Kawalkowski, Malgorzata Tsuda, Yoshio Higa, Yukiko Indelicato, Nicholas Leisnham, Paul T. Caccone, Adalgisa Armstrong, Philip M. |
author2_role |
author author author author author author author author author author author author author author author author |
dc.contributor.author.fl_str_mv |
Gloria-Soria, Andrea Shragai, Talya Ciota, Alexander Т. Duval, Todd B. Alto, Barry W. Martins, Ademir J. Westby, Kathleen M. Medley, Kim A. Unlu, Isik Campbell, Scott R. Kawalkowski, Malgorzata Tsuda, Yoshio Higa, Yukiko Indelicato, Nicholas Leisnham, Paul T. Caccone, Adalgisa Armstrong, Philip M. |
dc.subject.other.en_US.fl_str_mv |
Mosquito tigre asiático Colonização Criador de contêineres Genética de invasão Pressão de propágulo Expansão de alcance |
topic |
Mosquito tigre asiático Colonização Criador de contêineres Genética de invasão Pressão de propágulo Expansão de alcance Asian tiger mosquito Colonization Container-breeder Invasion genetics Propagule pressure Range expansion |
dc.subject.en.en_US.fl_str_mv |
Asian tiger mosquito Colonization Container-breeder Invasion genetics Propagule pressure Range expansion |
description |
Center for Vector Biology & Zoonotic Diseases, Department of Entomology, The Connecticut Agricultural Experiment Station, 123 Huntington St. New Haven, CT 06504 USA / Department of Ecology and Evolutionary Biology, Yale University, 21 Sachem Street, New Haven, CT 06520-8105 USA. |
publishDate |
2022 |
dc.date.issued.fl_str_mv |
2022 |
dc.date.accessioned.fl_str_mv |
2023-01-03T09:54:37Z |
dc.date.available.fl_str_mv |
2023-01-03T09:54:37Z |
dc.type.status.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
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info:eu-repo/semantics/article |
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article |
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publishedVersion |
dc.identifier.citation.fl_str_mv |
GLORIA-SORIA, Andrea et al. Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota, v. 78, p. 99-127, 2022. |
dc.identifier.uri.fl_str_mv |
https://www.arca.fiocruz.br/handle/icict/56253 |
dc.identifier.issn.en_US.fl_str_mv |
1314-2488 |
dc.identifier.doi.none.fl_str_mv |
10.3897/neobiota.78.84986 |
identifier_str_mv |
GLORIA-SORIA, Andrea et al. Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota, v. 78, p. 99-127, 2022. 1314-2488 10.3897/neobiota.78.84986 |
url |
https://www.arca.fiocruz.br/handle/icict/56253 |
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eng |
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eng |
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