dc.creatorTorres T.T.
dc.creatorAzeredo-Espin A.M.L.
dc.date2009
dc.date2015-06-26T13:33:53Z
dc.date2015-11-26T14:58:58Z
dc.date2015-06-26T13:33:53Z
dc.date2015-11-26T14:58:58Z
dc.date.accessioned2018-03-28T22:10:37Z
dc.date.available2018-03-28T22:10:37Z
dc.identifier
dc.identifierMedical And Veterinary Entomology. , v. 23, n. SUPPL. 1, p. 23 - 31, 2009.
dc.identifier0269283X
dc.identifier10.1111/j.1365-2915.2008.00786.x
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-63449122149&partnerID=40&md5=4661d14e7118a25e5e877043febea950
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/91848
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/91848
dc.identifier2-s2.0-63449122149
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1255960
dc.descriptionDiseases affecting livestock can have a significant impact on animal productivity and on trade of live animals, meat and other animal products, which, consequently, affects the overall process of economic development. The New World screwworm, Cochliomyia hominivorax (Coquerel) (Diptera: Calliphoridae), is an important parasitic insect pest in Neotropical regions. This species has been successfully eradicated from North and most of Central America by the sterile insect technique, but continues to affect the development of the livestock sector in most Caribbean economies. Here, we provide some insight into the patterns of genetic variation and structure and gene flow of C. hominivorax populations from the Caribbean. Analysis of populations from 10 geographical sites in four islands revealed a moderate genetic variability within the populations. Surprisingly, a high population differentiation was found even in intra-island comparisons between populations. This observation can reflect either highly structured populations resulting from a lack of gene flow or a source-sink dynamic. Our study also suggests that New World screwworm populations can recover very rapidly from population contractions. This is valuable information that should be required prior to any investment in large-scale efforts aiming at controlling this pest. © 2009 The Royal Entomological Society.
dc.description23
dc.descriptionSUPPL. 1
dc.description23
dc.description31
dc.descriptionAzeredo-Espin, A.M.L., Lessinger, A.C., Genetic approaches for studying myiasis-causing flies: Molecular markers and mitochondrial genomics (2006) Genetica, 126, pp. 111-131
dc.descriptionBonizzoni, M., Malacrida, A.R., Guglielmino, C.R., Gomulski, L.M., Gasperi, G., Zheng, L., Microsatellite polymorphism in the Mediterranean fruit fly, Ceratitis capitata (2000) Insect Molecular Biology, 9, pp. 251-261
dc.descriptionBundy, D.A.P., Grey, C.L., Occurrence and distribution of protozoan parasites in Caribbean livestock - A review (1982) Tropical Animal Health and Production, 14, pp. 235-241
dc.descriptionCallen, D.F., Thompson, A.D., Shen, Y., Phillips, H.A., Richards, R.I., Mulley, J.C., Sutherland, G.R., Incidence and origin of 'null' alleles in the (AC) n microsatellite marker (1993) American Journal of Human Genetics, 52, pp. 922-927
dc.descriptionCornuet, J.M., Luikart, G., Description and power analysis of two tests for detecting recent population bottlenecks from allele frequency data (1996) Genetics, 144, pp. 2001-2014
dc.descriptionDieringer, D., Schlötterer, C., Microsatellite analyser (MSA): A platform-independent analysis tool for large microsatellite datasets (2003) Molecular Ecology Notes, 3, pp. 167-169
dc.descriptionDyck, V.A., Reyes Flores, J., Vreysen, J.B., Al, E., Management of area-wide integrated pest management programmes that integrate the sterile insect technique (2005) Sterile Insect Technique: Principles and Practice in Area-Wide Integrated Pest Management, pp. 525-545. , ed. by. V. A. Dyck. J. Hendrichs. A. S. Robinson. pp. Springer. Dordrecht
dc.description(2006) Livestock Report 2006, pp. 3-83. , Food & Agriculture Organization (FAO). pp. FAO. Rome
dc.descriptionFrankham, R., Inbreeding and extinction: Island populations (1998) Conservation Biology, 12, pp. 665-675
dc.descriptionGoldstein, D.B., Schlötterer, C., (1999) Microsatellites: Evolution and Applications, pp. 1-352. , pp. Oxford University Press. Oxford
dc.descriptionGoudet, J., Fstat Version 1.2: A computer program to calculate F-statistics (1995) Journal of Heredity, 86, pp. 485-486
dc.descriptionGoudet, J., Raymond, M., De Meeüs, T., Rousset, F., Testing differentiation in diploid populations (1996) Genetics, 144, pp. 1933-1940
dc.descriptionGuo, S.W., Thompson, E.A., Performing the exact test of Hardy-Weinberg proportion for multiple alleles (1992) Biometrics, 48, pp. 361-372
dc.descriptionHanski, I.A., Gaggiotti, O.E., (2004) Ecology, Genetics and Evolution of Metapopulations, pp. 1-696. , pp. Elsevier Academic Press. London
dc.descriptionInfante-Malachias, M.E., Yotoko, K.S.C., Azeredo-Espin, M.L., Random amplified polymorphic DNA of screwworm fly populations (Diptera: Calliphoridae) from Southeastern Brazil and Northern Argentina (1999) Genome, 42, pp. 772-779
dc.descriptionInfante-Vargas, M.E., Azeredo-Espin, M.L., Genetic variability in mitochondrial DNA of the screwworm, Cochliomyia hominivorax (Diptera: Calliphoridae) from Brazil (1995) Biochemical Genetics, 33, pp. 237-256
dc.descriptionKrafsur, E.S., Whitten, C.J., Breeding structure of screwworm fly populations (Diptera: Calliphoridae) in Colima, Mexico (1993) Journal of Medical Entomology, 30, pp. 477-480
dc.descriptionLyra, M.L., Fresia, P., Gama, S., Cristina, J., Klaczko, L.B., Azeredo-Espin, M.L., Analysis of mitochondrial DNA variability and genetic structure in populations of New World screwworm flies (Diptera: Calliphoridae) from Uruguay (2005) Journal of Medical Entomology, 42, pp. 589-595
dc.descriptionMéndez, L., García, R., Serrano, E., Myiasis for Cochliomyia hominivorax: Development and evaluation of an adult suppression system (2005) Book of Extended Synopses, pp. 288-289. , pp. Food & Agriculture Organization/ International Atomic Energy Agency International Conference on Area-Wide Control of Insect Pests: Integrating the Sterile Insect and Related Nuclear and Other Techniques, 9-13 May 2005, Vienna. IAEA, Vienna
dc.descriptionMichel, A.P., Ingrasci, M.J., Schemerhorn, B.J., Al, E., Rangewide population genetic structure of the African malaria vector Anopheles funestus (2005) Molecular Ecology, 14, pp. 4235-4248
dc.descriptionPiry, S., Luikart, G., Cornuet, J.M., Bottleneck: A computer program for detecting recent 536 reductions in the effective population size using allele frequency data (1999) Journal of Heredity, 90, pp. 502-503
dc.descriptionPritchard, J.K., Stephens, M., Donnelly, P., Inference of population structure using multilocus genotype data (2000) Genetics, 155, pp. 945-959
dc.descriptionRaymond, M., Rousset, F., Genepop (Version 1.2): Population genetics software for exact tests and ecumenicism (1995) Journal of Heredity, 86, pp. 248-249
dc.descriptionRice, W.R., Analysing table of statistical tests (1989) Evolution, 43, pp. 223-225
dc.descriptionRobertson, B.C., Gemmell, N.J., Defining eradication units to control invasive pests (2004) Journal of Applied Ecology, 41, pp. 1042-1048
dc.descriptionTaylor, D.B., Peterson Ii, R.D., Population genetics and gene variation in primary and secondary screwworm (Diptera: Calliphoridae) (1994) Annals of the Entomological Society of America, 87, pp. 626-633
dc.descriptionTaylor, D.B., Peterson Ii, R.D., Moya-Borja, G., Population genetics and gene variation in screwworms (Diptera: Calliphoridae) from Brazil (1996) Biochemical Genetics, 34, pp. 67-76
dc.descriptionTorres, T.T., Azeredo-Espin, M.L., Development of new polymorphic microsatellite markers for the New World screwworm Cochliomyia hominivorax (Diptera: Calliphoridae) (2005) Molecular Ecology Notes, 5, pp. 815-817
dc.descriptionTorres, T.T., Brondani, R.P.V., Garcia, J.E., Azeredo-Espin, M.L., Isolation and characterization of microsatellite markers in the New World screwworm Cochliomyia hominivorax (Diptera: Calliphoridae) (2004) Molecular Ecology Notes, 4, pp. 182-184
dc.descriptionTorres, T.T., Lyra, M.L., Fresia, P., Azeredo-Espin, M.L., Assessing genetic variation in the New World screwworm Cochliomyia hominivorax populations from Uruguay (2007) Area-Wide Control of Insect Pests: From Research to Field Implementation, pp. 183-192. , ed. by. M. J. B. Vreysen. A. S. Robinson. J. Hendrichs. pp. . Springer. Dordrecht
dc.descriptionVan Oosterhout, C., Hutchinson, B., Wills, D., Shipley, P., (2003) Microchecker, Microsatellite Data Checking Software., , http://www.microchecker.hull.ac.uk, Accessed 7 July 2007
dc.descriptionVargas-Terán, M., Hofmann, H.C., Tweddle, N.E., Impact of screwworm eradication programmes using the sterile insect technique (2005) Sterile Insect Technique: Principles and Practice in Area-Wide Integrated Pest Management, pp. 629-650. , ed. by V. A. Dyck, J. Hendrichs A. S. Robinson Springer, Dordrecht
dc.descriptionWyss, J.H., Screwworm eradication in the Americas (2000) Annals of the New York Academy of Science, 916, pp. 186-193
dc.languageen
dc.publisher
dc.relationMedical and Veterinary Entomology
dc.rightsfechado
dc.sourceScopus
dc.titlePopulation Genetics Of New World Screwworm From The Caribbean: Insights From Microsatellite Data
dc.typeArtículos de revistas


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