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- W883993136 abstract "355 m/s n° 4, vol. 31, avril 2015 DOI : 10.1051/medsci/20153104003 3. Carissimo G, Pondeville E, McFarlane M, et al. Antiviral immunity of Anopheles gambiae is highly compartmentalized, with distinct roles for RNA interference and gut microbiota. Proc Natl Acad Sci USA 2015 ; 112 : E176-85. 4. Holt RA, Subramanian GM, Halpern A, et al. The genome sequence of the malaria mosquito Anopheles gambiae. Science 2002 ; 298 : 129-49. 5. Cirimotich CM, Dong Y, Garver LS, et al. Mosquito immune defenses against Plasmodium infection. Dev Comp Immunol 2010 ; 34 : 387-95. 6. Smith RC, Vega-Rodriguez J, Jacobs-Lorena M. The Plasmodium bottleneck: malaria parasite losses in the mosquito vector. Memorias do Instituto Oswaldo Cruz 2014 ; 109 : 644-61. 7. Keene KM, Foy BD, Sanchez-Vargas I, et al. RNA interference acts as a natural antiviral response to O’nyong-nyong virus (Alphavirus; Togaviridae) infection of Anopheles gambiae. Proc Natl Acad Sci USA 2004 ; 101 : 17240-5. 8. Waldock J, Olson KE, Christophides GK. Anopheles gambiae antiviral immune response to systemic O’nyong-nyong infection. PLoS Negl Trop Dis 2012 ; 6 : e1565. 9. Myles KM, Wiley MR, Morazzani EM, Adelman ZN. Alphavirus-derived small RNAs modulate pathogenesis in disease vector mosquitoes. Proc Natl Acad Sci USA 2008 ; 105 : 19938-43. 10. Dennison NJ, Jupatanakul N, Dimopoulos G. The mosquito microbiota influences vector competence for human pathogens. Curr Opinion Insect Sci 2014 ; 3 : 6-13. En effet, il serait dramatique que des moustiques censes etre plus resistants a Plasmodium deviennent susceptibles a d’autres pathogenes. ‡ Compartimentalization of immune responses in the mosquito Anopheles gambiae: consequences for insect vector immunity research" @default.
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- W883993136 date "2015-04-01" @default.
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- W883993136 title "Le microbiote intestinal, un acteur de la réponse immunitaire adaptative antivirale ?" @default.
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- W883993136 doi "https://doi.org/10.1051/medsci/20153104003" @default.
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