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Mosquitos Genéticamente Modificados - Third World Network

Mosquitos Genéticamente Modificados - Third World Network

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Female-Specific Flightless (fsRIDL) Phenotype for Control ofAedes albopictus. PLoS Neglected Tropical Diseases, 6(7): e1724.http://www.plosntds.org/article/info%3Adoi%2F10.1371%2Fjournal.pntd.0001724104 Oxitec (2012) Oxitec Scientists Clip Wings of the Asian TigerMosquito. Press release, 18 July 2012. http://www.sacbee.com/2012/07/18/4639317/oxitec-scientists-clip-wings-of.html105 Diallo M et al. (2005) Potential Role of Sylvatic and Domestic AfricanMosquito Species in Dengue Emergence. The American Journal ofTropical Medicine and Hygiene, 73(2), 445-449.106 Bonizzoni M, Dunn WA, Campbell L,Olson KE, Marinotti O, JamesAA (2012) Strain Variation in the Transcriptome of the Dengue FeverVector, Aedes aegypti. G3, 2(1),103-114. http://www.g3journal.org/content/2/1/103.full107 Van Den Hurk AF et al. (2011) Vector Competence of AustralianMosquitoes for Yellow Fever Virus. The American Journal of TropicalMedicine and Hygiene, 85(3), 446-451.108 Aitken TH, Downs WG, Shope RE (1977) Aedes aegypti strainfitness for yellow fever virus transmission. The American Journalof Tropical Medicine and Hygiene, 26(5 Pt 1), 985-989.109 Tabachnick WJ et al. (1985) Oral Infection of Aedes Aegypti withYellow Fever Virus: Geographic Variation and Genetic Considerations.The American Journal of Tropical Medicine and Hygiene, 34(6),1219-1224.110 de Oliveira RL et al. (2003) Large genetic differentiation and lowvariation in vector competence for dengue and yellow fever virusesof Aedes albopictus from Brazil, the United States, and the CaymanIslands. The American Journal of Tropical Medicine and Hygiene,69(1), 105-114.111 Lima RS Jr, Scarpassa VM (2009) Evidence of two lineages of thedengue vector Aedes aegypti in the Brazilian Amazon, based onmitochondrial DNA ND4 gene sequences. Genetics and MolecularBiology, 32(2), 414-422.79

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