First report of Aedes (Stegomyia) albopictus (Skuse) in Orinoquia region of Colombia
Abstract
Introduction: Aedes albopictus is an arbovirus vector, such as Flavivirus, Alphavirus, Bunyavirus, Phlebovirus, Orbivirus and Picornavirus. Many are etiological agents of diseases in humans. Currently, A. albopictus is in geographical expansion due to its adaptation to different environments and breeding sites. In Colombia this mosquito was first reported in 1998 and currently it has been registered in 10 departments.
Objective: To determine the presence of A. albopictus in Yopal, Casanare.
Materials and methods: In a search of larvae of A. aegypti in the industrial zone of Yopal adult mosquitoes of A. albopictus were observed for the first time. Then, the inspection was carried out in the indoor and outdoor of houses in eight localities of the municipality, in which larvae and pupae were collected by inspection of breeding sites and adult females were captured by human landing catches.
Results: Seven hundred and seventy-five larvae were identified, 71.5 % larvae of A. aegypti, 24.8 % of A. albopictus, 3.2 % of Culex quinquefasciatus and 0.8 % of C. coronator and C. nigripalpus. Thirty-seven adult mosquitoes of A. albopictus were collected. The most abundant breeding sites of this vector were tires.
Conclusion: Given the presence of A. albopictus we suggest to intensify the entomological surveillance system to detect new populations within the department and nearby areas. Attention should be given to artificial breeding sites located in areas close to the parking of vehicles of transport of foods, supplies, and machinery from areas with the presence of the vector.
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References
Paupy C, Delatte H, Bagny L, Corbel V, Fontenille D. Aedes albopictus, an arbovirus vector: From the darkness to the light. Microbes Infect. 2009;11:1177-85. https://doi.org/10.1016/j.micinf.2009.05.005
Rezza G, Nicoletti L, Angelini R, Romi R, Finarelli A, Panning M, et al. Infection with chikungunya virus in Italy: An outbreak in a temperate region. Lancet. 2007;370:1840-6. https://doi.org/10.1016/S0140-6736(07)61779-6
Estrada-Franco JG, Craig GB. Biology, disease relationships, and control of Aedes albopictus. Washington, D. C.: PAHO; 1995.
Ferreira-De-Lima VH, Lima-Camara TN. Natural vertical transmission of dengue virus in Aedes aegypti and Aedes albopictus: A systematic review. Parasit Vectors. 2018;11:1-8. https://doi.org/10.1186/s13071-018-2643-9
Laird RL. Observations on mosquito transmission of Plasmodium lophurae. Am J Epidemiol. 1941;34:163-7.
Muñoz M, Navarro JC. Virus Mayaro: un arbovirus reemergente en Venezuela y Latinoamérica. Biomédica. 2012;32:288-302. https://doi.org/10.7705/biomedica.v32i2.647
Carvajal JJ, Moncada LI, Rodríguez MH, Pérez LDP, Olano VA. Caracterización preliminar de los sitios de cría de Aedes (Stegomyia) albopictus (Skuse, 1894) (Diptera: Culicidae) en el municipio de Leticia, Amazonas, Colombia. Biomédica. 2009;29:413-23. https://doi.org/10.7705/biomedica.v29i3.13
Waldock J, Chandra NL, Lelieveld J, Proestos Y, Michael E, Christophides G, et al. The role of environmental variables on Aedes albopictus biology and chikungunya epidemiology. Pathog Glob Health. 2013;107:224-41. https://doi.org/10.1179/2047773213Y.0000000100
Vélez ID, Quiñones ML, Suárez M, Olano V, Murcia LM, Correa E, et al. Presencia de Aedes albopictus en Leticia, Amazonas, Colombia. Biomédica. 1998;18:192-8. https://doi.org/10.7705/biomedica.v18i3.990
Suárez M. Aedes albopictus (Skuse) (Diptera, Culicidae) en Buenaventura, Colombia. Inf Quinc Epidemiol Nac. 2001;6:221-4.
Cuéllar-Jiménez ME, Velásquez-Escobar OL, González-Obando R, Morales-Reichmann CA. Detección de Aedes albopictus (Skuse) (Diptera: Culicidae) en la ciudad de Cali, Valle del Cauca, Colombia. Biomédica. 2010;27:273-9. https://doi.org/10.7705/biomedica.v27i2.224
Rúa-Uribe G, Suárez-Acosta C, Londoño V, Sánchez J, Rojo R, Bello-Novoa B. Primera evidencia de Aedes albopictus (Skuse) (Diptera: Culicidae) en la ciudad de Medellín, Antioquia-Colombia. Rev Salud Pública Alcaldía de Medellín. 2011;5:89-98.
Carvajal JJ, Honorio NA, Díaz SP, Ruiz ER, Asprilla J, Ardila S, et al. Detección de Aedes albopictus (Skuse) (Diptera: Culicidae) en el municipio de Istmina, Chocó, Colombia. Biomédica. 2016;36:438-46. https://doi.org/10.7705/biomedica.v36i3.2805
Zamora-Delgado J, Castaño JC, Hoyos-López R. DNA barcode sequences used to identify Aedes (Stegomyia) albopictus (Diptera: Culicidae) in La Tebaida (Quindío, Colombia). Rev Colomb Entomol. 2015;41:212-7.
Alcaldía de Yopal. Nuestro municipio. Información geográfica 2016. Fecha de consulta: 2 de diciembre de 2016. Disponible en: http://www.yopal-casanare.gov.co/index.shtml
Gobernación de Casanare. Yopal, la capital del departamento: Reseña histórica y aspectos generales sobre el municipio. Fecha de consulta: 25 de diciembre de 2016. Disponible en: http://www.casanare.gov.co/?idcategoria=1271
Cova P, Sutil E, Rausseo JA. Mosquitos (Culicinos) de Venezuela, Volumen II. Caracas: Ministerio de Sanidad y Asistencia Social; 1966.
Rueda LM. Pictorial keys for the identification of mosquitoes (Diptera: Culicidae) associated with dengue virus transmission. Zootaxa. 2004;589:1-60.
Organización Mundial de la Salud- Programa Especial para Investigación y Capacitación en Enfermedades Tropicales. Vigilancia, preparación y respuesta ante emergencias. Dengue: Guías para el diagnóstico, tratamiento, prevención y control. La Paz: OPS/OMS; 2009. p. 1-152.
Hernández M, Piña M, Soto-Vivas A, Rangel MA, Liria J. Primer registro de Aedes albopictus (Skuse, 1894) (Diptera: Culicidae) en el Estado Carabobo, Venezuela. Salus. 2015;19:41-3.
Abraham D, Castillo C. Primer registro de Aedes albopictus (SKUSE, 1894) (Diptera: Culicidae) en el estado Trujillo, Venezuela. Revista Academia. 2017;16:123-7.
Rubio-Palas Y, Estrada Y, Guzmán H, Caura S, Sánchez V, Arias L. Primer reporte de Aedes (Stegomyia) albopcitus (Skuse) (Diptera: Culicidae) en el estado Bolívar e implicaciones epidemiológicas. Bol Mal Salud Amb. 2015;55:110-2.
Tsetsarkin KA, Vanlandingham DL, McGee CE, Higgs S. A single mutation in chikungunya virus affects vector specificity and epidemic potential. PLoS Pathog. 2007;3:e201. https://doi.org/10.1371/journal.ppat.0030201
Scott TW, Lorenz LH, Weaver SC. Susceptibility of Aedes albopictus to infection with eastern equine encephalomyelitis virus. J Am Mosq Control Assoc. 1990;6:274-8.
Instituto Colombiano Agropecuario (ICA). El ICA declara cuarentena en veredas del municipio de Yopal, Casanare, por encefalitis equina del este. Fecha de consulta: 29 de diciembre de 2016. Disponible en: http://www.ica.gov.co/Noticias/El-ICA-declara-cuarentena-en-veredas-delmunicipio.aspx
Pan American Health Organization. Dengue and dengue hemorrhagic fever in the Americas: Guidelines for prevention and control. Scientific publication N°. 548. Washington, D.C.: PAHO; 1994. p. 98.
Organizacion Mundial de la Salud. A review of entomological sampling methods and indicators for dengue vectors. Fecha de consulta: 3 de noviembre de 2018. Disponible en: http://apps.who.int/iris/bitstream/handle/10665/68575/TDR_IDE_DEN_03.1.pdf?sequence=1&isAllowed=y
Nofita E, Rusdji SR, Irawati N, Hasmiwati C, Hasmiwati S, Renita R. Analysis of indicators entomology Aedes aegypti in endemic areas of dengue fever in Padang, West Sumatra, Indonesia. Int J Mosq Res IJMR. 2017;4:57-9.
Bowman LR, Runge-Ranzinger S, McCall PJ. Assessing the relationship between vector indices and dengue transmission: A Systematic review of the evidence. PLoS Negl Trop Dis. 2014;8:e2848. https://doi.org/10.1371/journal.pntd.0002848
Sánchez L, Vanlerberghe V, Alfonso L, Marquetti M del C, Guzmán MG, Bisset J, et al. Aedes aegypti larval indices and risk for dengue epidemics. Em Infect Dis. 2006;12:800-6. https://doi.org/10.3201/eid1205.050866
Cromwell EA, Stoddard ST, Barker CM, van Rie A, Messer WB, Meshnick SR, et al. The relationship between entomological indicators of Aedes aegypti abundance and dengue virus infection. PLoS Negl Trop Dis. 2017;11:1-22. https://doi.org/10.1371/journal.pntd.0005429
Tinker ME, Olano VA. Ecología del Aedes aegypti en un pueblo de Colombia, Sur América. Biomédica. 1993;13:5-14. https://doi.org/10.7705/biomedica.v13i1.2041
Kamgang B, Nchoutpouen E, Simard F, Paupy C. Notes on the blood-feeding behavior of Aedes albopictus (Diptera: Culicidae) in Cameroon. Parasit Vectors. 2012;5:3-6. https://doi.org/10.1186/1756-3305-5-57
Delatte H, Desvars A, Bouétard A, Bord S, Gimonneau G, Vourc’h G, et al. Blood-feeding behavior of Aedes albopictus, a vector of Chikungunya on La Réunion. Vector Borne Zoonotic Dis. 2010;10:249-58. https://doi.org/10.1089/vbz.2009.0026
Dzul-Manzanilla F, Ibarra-López J, Bibiano-Marín W, Martini-Jaimes A, Leyva JT, Correa-Morales F, et al. Indoor resting behavior of Aedes aegypti (Diptera: Culicidae) in Acapulco, Mexico. J Med Entomol. 2017;54:501-4. https://doi.org/10.1093/jme/tjw203
Barrera R. Competition and resistance to starvation in larvae of container-inhabiting Aedes mosquitoes. Ecol Entomol. 1996;21:117-27.
Nasci RS, Hare S, Scott F. Interspecific mating between Louisiana strains of Aedes albopictus and Aedes aegypti in the field and laboratory. J Am Mosq Control Assoc. 1989;5:416-21.
Tripet F, Lounibos LP, Robbins D, Moran J, Nishimura N, Blosser EM. Competitive reduction by satyrization? evidence for interspecific mating in nature and asymmetric reproductive competition between invasive mosquito vectors. Am. J Trop Med Hyg. 2011;85:265-70. https://doi.org/10.4269/ajtmh.2011.10-0677
Lima-Camara T, Torres C, Alves N, Vieira R, Peixoto AF, Lounibos LP. Male accessory gland substances from Aedes albopictus affect the locomotor activity of Aedes aegypti females. Mem Inst Oswaldo Cruz. 2013;108:18-25. https://doi.org/10.1590/0074-0276130381
Rey JR, Lounibos LP. Ecology of Aedes aegypti and Aedes albopictus in the Americas and disease transmission. Biomédica. 2015;35:177-85. https://doi.org/10.1590/S0120-41572015000200005
Tran A, L'Ambert G, Lacour G, Benoît R, Demarchi M, Cros M, et al. A rainfall-and temperature-driven abundance model for Aedes albopictus populations. Int J Environ Res Public Health. 2013;10:1698-719. https://doi.org/10.3390/ijerph10051698
Caputo B, Ienco A, Manica M, Petrarca V, Rosà R, Della Torre A. New adhesive traps to monitor urban mosquitoes with a case study to assess the efficacy of insecticide control strategies in temperate areas. Parasit Vectors. 2015;8:1-12. https://doi.org/10.1186/s13071-015-0734-4
Alcaldía de Yopal. Plan de ordenamiento territorial POT-Yopal. 2013. Tomo II: 1-218. Fecha de consulta: 5 de enero de 2017. Disponible en: http://tramites1.suit.gov.co/registro-web/suit_descargar_archivo?A=12516
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