of Aedes albopictus. PLoS ONE, 7(4): e35959. doi:10.1371/journal.pone.0035959. http://www.plosone.org/article/info:doi/10.1371/journal.pone.003595916 Barclay HJ (2001) Modeling incomplete sterility in a sterile releaseprogram: interactions with other factors. Population Ecology, 43(3),197-206.17 Reiter P, Amador MA, Anderson RA, Clark CG (1995) Short Report:Dispersal of Aedes aegypti in an urban area after blood feeding asdemonstrated by rubidium-marked eggs. The American Journal ofTropical Medicine and Hygiene, 52(2), 177-179.18 CDC (undated) Dengue: Entomology & Ecology. http://www.cdc.gov/dengue/entomologyEcology/index.html19 Atkinson MP, Su Z, Alphey N, Alphey LS, Coleman PG, WeinLM (2007) Analyzing the control of mosquito-borne diseases bya dominant lethal genetic system. Proceedings of the NationalAcademy of Sciences USA, 104, 9540-9545.20 Yakob L, Alphey L, Bonsall MB (2008) Aedes aegypti control: theconcomitant role of competition, space and transgenic technologies.Journal of Applied Ecology, 45, 1258-1265.21 White SM, Rohani P, Sait SM (2010) Modelling pulsed releasesfor sterile insect techniques: fitness costs of sterile and transgenicmales and the effects on mosquito dynamics. Journal of AppliedEcology, 47(6), 1329-1339.22 Phuc HK, Andreasen MH, Burton RS, Vass C, Epton MJ et al.(2007) Late-acting dominant lethal genetic systems and mosquitocontrol. BMC Biology, 5: 11. doi:10.1186/1741-7007-5-1. http://www.biomedcentral.com/1741-7007/5/1123 Dye C (1984) Models for the Population Dynamics of the YellowFever Mosquito, Aedes aegypti. Journal of Animal Ecology, 53(1),247-268.24 Juliano SA (2009) Species interactions among larval mosquitoes:context dependence across habitat gradients. Annu. Rev. Entomol.,54, 37-56.69
25 For example, Slides 16 and 17 in: Oxitec (2011) Potential UK trial of“genetically sterile” (RIDL®) diamondback moth (Plutella xylostella).PowerPoint presentation to Health and Safety Executive (HSE)Scientific Advisory Committee on Genetic Modification (SACGM).26 Harris AF et al. (2011) Field performance of engineered malemosquitoes. Nat. Biotech., 29(11), 1034-1037.27 Shelly T, McInnis D (2011) Road test for genetically modifiedmosquitoes. Nat. Biotech., 29(11), 984-985.28 Enserink M (2011) GM Mosquito Release in Malaysia SurprisesOpponents and Scientists – Again. Science Insider, 27 January2011. http://news.sciencemag.org/scienceinsider/2011/01/gm-mosquitorelease-in-malaysia.html?ref=ra29 Harris AF, McKemey AR, Nimmo D, Curtis Z, Black I, Morgan SA,Oviedo MN, Lacroix R, Naish N, Morrison NI, Collado A, StevensonJ, Scaife S, Dafa’alla T, Fu G, Phillips C, Miles A, Raduan N, KellyN, Beech C, Donnelly CA, Petrie WD, Alphey L (2012) Successfulsuppression of a field mosquito population by sustained release ofengineered male mosquitoes. Nat. Biotech., 30(9), 828-830.30 Harris AF et al. (2011) Field performance of engineered malemosquitoes. Nat. Biotech., 29(11), 1034-1037.31 Bialeck M (2012) Mosquito Control in the Florida Keys. ScientificAmerican, 11 April 2012. http://blogs.scientificamerican.com/guestblog/2012/04/11/mosquito-control-in-the-florida-keys/32 PAT (2012) Transgenic Aedes Project Progress Report, Feb 2011-Mar 2012.33 da Silveira E (2011) Solução genética. FAPESP Pequisa, February2011.34 Scott TM, Takken W, Knols BGJ, Boëte C (2002) The ecology ofgenetically modified mosquitoes. Science, 298, 117-119.35 Morrison AC, Minnick SL, Rocha C, Forshey BM, Stoddard ST, GetisA, Focks DA, Russell KL, Olson JG, Blair PJ, Watts DM, SihuinchaM, Scott TW, Kochel TJ (2010) Epidemiology of dengue virus in70
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Los resultados preliminares de los
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