RNAi Targeting of West Nile Virus in Mosquito Midguts Promotes Virus Diversification

scientific article published in July 2009

RNAi Targeting of West Nile Virus in Mosquito Midguts Promotes Virus Diversification is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1371/JOURNAL.PPAT.1000502
P3181OpenCitations bibliographic resource ID781922
P932PMC publication ID2698148
P698PubMed publication ID19578437
P5875ResearchGate publication ID26648348

P50authorGregory D EbelQ60488306
Doug E BrackneyQ91826446
Jennifer BeaneQ47982918
P2860cites workA single mutation in chikungunya virus affects vector specificity and epidemic potentialQ21131599
RNA interference directs innate immunity against viruses in adult DrosophilaQ24551516
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HIV-1 can escape from RNA interference by evolving an alternative structure in its RNA genomeQ24802185
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The West Nile virus mutant spectrum is host-dependant and a determinant of mortality in miceQ27480939
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Genetic variation in West Nile virus from naturally infected mosquitoes and birds suggests quasispecies structure and strong purifying selectionQ27486388
Alphavirus-derived small RNAs modulate pathogenesis in disease vector mosquitoesQ27487509
Dengue Virus Type 2 Infections of Aedes aegypti Are Modulated by the Mosquito's RNA Interference PathwayQ27487848
The Toll pathway is important for an antiviral response in DrosophilaQ28249049
The RNA silencing endonuclease Argonaute 2 mediates specific antiviral immunity in Drosophila melanogasterQ28271770
A simplified method for cloning of short interfering RNAs from Brassica juncea infected with Turnip mosaic potyvirus and Turnip crinkle carmovirus.Q51724856
Next-generation DNA sequencingQ29547447
Intrinsic Factors Affecting Vector Competence of Mosquitoes for ArbovirusesQ29616257
RNA interference acts as a natural antiviral response to O'nyong-nyong virus (Alphavirus; Togaviridae) infection of Anopheles gambiaeQ29616263
Characterization of Culex Flavivirus (Flaviviridae) strains isolated from mosquitoes in the United States and TrinidadQ33405674
Role of the mutant spectrum in adaptation and replication of West Nile virusQ35645998
Quantitation of relative fitness and great adaptability of clonal populations of RNA virusesQ36693778
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siRNA-resistance in treated HCV replicon cells is correlated with the development of specific HCV mutationsQ40218001
Nucleotide sequence homology requirements of HIV-1-specific short hairpin RNAQ40240936
Isolation of a new strain of the flavivirus cell fusing agent virus in a natural mosquito population from Puerto RicoQ40306736
A newly emergent genotype of West Nile virus is transmitted earlier and more efficiently by Culex mosquitoes.Q40442234
La Crosse virus nonstructural protein NSs counteracts the effects of short interfering RNA.Q40481133
Quantitative trait loci affecting dengue midgut infection barriers in an advanced intercross line of Aedes aegyptiQ40518846
Genetic and phenotypic variation of West Nile virus in New York, 2000-2003.Q40522123
Comparison of the transmission potential of two genetically distinct Sindbis viruses after oral infection of Aedes aegypti (Diptera: Culicidae).Q40584807
Poliovirus escape from RNA interference: short interfering RNA-target recognition and implications for therapeutic approachesQ40723068
Plant virus-derived small interfering RNAs originate predominantly from highly structured single-stranded viral RNAs.Q42847004
Culex flavivirus isolates from mosquitoes in GuatemalaQ42983682
Quantitative genetics of vector competence for dengue-2 virus in Aedes aegypti.Q42991677
Probing the sequence space available for HIV-1 evolutionQ44674520
Essential function in vivo for Dicer-2 in host defense against RNA viruses in drosophilaQ44686815
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue7
P921main subjectvirusQ808
West Nile virusQ158856
mosquito midgutQ121776607
P304page(s)e1000502
P577publication date2009-07-01
P1433published inPLOS PathogensQ283209
P1476titleRNAi Targeting of West Nile Virus in Mosquito Midguts Promotes Virus Diversification
P478volume5

Reverse relations

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