2007
Replication of Flock House Virus in Three Genera of Medically Important Insects
Dasgupta R, Free H, Zietlow S, Paskewitz S, Aksoy S, Shi L, Fuchs J, Hu C, Christensen B. Replication of Flock House Virus in Three Genera of Medically Important Insects. Journal Of Medical Entomology 2007, 51 DOI: 10.1603/0022-2585(2007)44[102:rofhvi]2.0.co;2.Peer-Reviewed Original ResearchFlock House virusImportant insectsHost rangeInsect host rangeOrders of insectsGrass grub Costelytra zealandicaPlus-sense RNAGenera of mosquitoesGreen fluorescent proteinMalaria vector AnophelesVirus growth rateVirus-host interactionsRhodnius prolixus StalPlaque-forming unitsInsectsFluorescent proteinHost interactionsCostelytra zealandicaLow doseVector AnophelesLower mortalityCulex pipiens pipiens L.Major tissuesTsetse fliesAdverse effectsReplication of Flock House Virus in Three Genera of Medically Important Insects
Dasgupta R, Free H, Zietlow S, Paskewitz S, Aksoy S, Shi L, Fuchs J, Hu C, Christensen B. Replication of Flock House Virus in Three Genera of Medically Important Insects. Journal Of Medical Entomology 2007, 44: 102-110. DOI: 10.1603/0022-2585%282007%2944%5b102%3arofhvi%5d2.0.co%3b2.Peer-Reviewed Original ResearchFlock House virusImportant insectsHost rangeInsect host rangeOrders of insectsGrass grub Costelytra zealandicaPlus-sense RNAGenera of mosquitoesGreen fluorescent proteinMalaria vector AnophelesVirus growth rateVirus-host interactionsRhodnius prolixus StalPlaque-forming unitsInsectsFluorescent proteinHost interactionsCostelytra zealandicaLow doseVector AnophelesLower mortalityCulex pipiens pipiens L.Major tissuesTsetse fliesAdverse effects
2004
Phylogenetics: Taxonomy and the microsporidia as derived fungi
Vossbrinck C, Andreadis T, Weiss L. Phylogenetics: Taxonomy and the microsporidia as derived fungi. World Class Parasites 2004, 9: 189-213. DOI: 10.1007/978-1-4020-7846-0_11.Peer-Reviewed Original ResearchMolecular phylogenyMolecular phylogenetic analysisUncertain taxonomic statusRibosomal RNA genesEukaryotic intracellular parasitesTraditional phylogenyAnimal phylaRNA genesImportant insectsTaxonomic statusPhylogenetic analysisNucleotide sequenceSpecies identificationPhylogenyHuman diseasesMolecular biologyIntracellular parasitesMicrosporidia speciesMicrosporidiaOrganismsOpportunistic pathogenNosemaGenusFungiProtozoa
2001
Prospects for control of African trypanosomiasis by tsetse vector manipulation
Aksoy S, O'Neill S, Maudlin I, Dale C, Robinson A. Prospects for control of African trypanosomiasis by tsetse vector manipulation. Trends In Parasitology 2001, 17: 29-35. PMID: 11137738, DOI: 10.1016/s1471-4922(00)01850-x.Peer-Reviewed Original ResearchConceptsArea-wide approachHuman disease managementLivestock ownersAnimal diseasesAgricultural outputMolecular genetic approachesImportant insectsInfected hostDisease managementEconomic incentivesTsetse populationsVector manipulationGenetic approachesMammalian hostsVector competenceEffective vaccineDiseases reliesHostTrypanosomiasisControl strategyInsectsAfrican trypanosomiasisTsetseLong runControl
1997
SYSTEMATICS OF MOSQUITO DISEASE VECTORS (DIPTERA, CULICIDAE):Impact of Molecular Biology and Cladistic Analysis
Munstermann L, Conn J. SYSTEMATICS OF MOSQUITO DISEASE VECTORS (DIPTERA, CULICIDAE):Impact of Molecular Biology and Cladistic Analysis. Annual Review Of Entomology 1997, 42: 351-369. PMID: 9017898, DOI: 10.1146/annurev.ento.42.1.351.Peer-Reviewed Original ResearchConceptsCladistic analysisDisease vectorsCryptic species complexAnopheles punctulatus groupCulex subgenus MelanoconionA. scutellaris groupMosquito disease vectorsRestriction fragment polymorphismPunctulatus groupSpecies complexImportant insectsScutellaris groupTaxonomic divisionsMolecular dataSubgenus MelanoconionConventional taxonomyTribe SabethiniAnopheles gambiaeAnopheles pseudopunctipennisAnopheles albitarsisAnopheles nuneztovariMolecular biologyFragment polymorphismDNA sequencingCulex pipiens
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