Development of high-throughput real-time PCR assays for the identification of insensitive acetylcholinesterase (ace-1R) in Anopheles gambiae
暂无分享,去创建一个
John Vontas | Linda M. Field | Martin S. Williamson | Chris Bass | M. Williamson | L. Field | J. Vontas | C. Bass | Dimitra Nikou | D. Nikou | Dimitra Nikou
[1] S. D. de Vlas,et al. Documenting the SARS epidemic in mainland China , 2009, Tropical medicine & international health : TM & IH.
[2] F. Simard,et al. Distribution of insensitive acetylcholinesterase (ace‐1R) in Anopheles gambiae s.l. populations from Burkina Faso (West Africa) , 2009, Tropical medicine & international health : TM & IH.
[3] F. Chandre,et al. Ace-1 duplication in Anopheles gambiae: a challenge for malaria control , 2009, Malaria Journal.
[4] I. Kleinschmidt,et al. A pre-intervention study of malaria vector abundance in Rio Muni, Equatorial Guinea: Their role in malaria transmission and the incidence of insecticide resistance alleles , 2008, Malaria Journal.
[5] John Vontas,et al. PCR-based detection of Plasmodium in Anopheles mosquitoes: a comparison of a new high-throughput assay with existing methods , 2008, Malaria Journal.
[6] J. Morgan,et al. Reduced susceptibility to DDT in field populations of Anopheles quadriannulatus and Anopheles arabiensis in Malawi: evidence for larval selection , 2008, Medical and veterinary entomology.
[7] A. Koffi,et al. Evidence of Introgression of the ace-1R Mutation and of the ace-1 Duplication in West African Anopheles gambiae s. s , 2008, PloS one.
[8] Chris Bass,et al. Development of a multiplex real-time PCR assay for identification of members of the Anopheles gambiae species complex. , 2008, Acta tropica.
[9] J. Bonnet,et al. Costs and benefits of multiple resistance to insecticides for Culex quinquefasciatus mosquitoes , 2008, BMC Evolutionary Biology.
[10] Chris Bass,et al. Identification of the main malaria vectors in the Anopheles gambiae species complex using a TaqMan real-time PCR assay , 2007, Malaria Journal.
[11] John Vontas,et al. Detection of knockdown resistance (kdr) mutations in Anopheles gambiae: a comparison of two new high-throughput assays with existing methods , 2007, Malaria Journal.
[12] C. Qiao,et al. Different Amino-Acid Substitutions Confer Insecticide Resistance Through Acetylcholinesterase 1 Insensitivity in Culex vishnui and Culex tritaeniorhynchus (Diptera: Culicidae) from China , 2007, Journal of medical entomology.
[13] M. Rowland,et al. Multiple insecticide resistance mechanisms in Anopheles gambiae and Culex quinquefasciatus from Benin, West Africa. , 2007, Acta tropica.
[14] Vincent Corbel,et al. Reduced Efficacy of Insecticide-treated Nets and Indoor Residual Spraying for Malaria Control in Pyrethroid Resistance Area, Benin , 2007, Emerging infectious diseases.
[15] Frank Speleman,et al. Real-time quantitative PCR as an alternative to Southern blot or fluorescence in situ hybridization for detection of gene copy number changes. , 2007, Methods in molecular biology.
[16] J. Bisset,et al. Selection of Insensitive Acetylcholinesterase as a Resistance Mechanism in Aedes aegypti (Diptera: Culicidae) from Santiago de Cuba , 2006, Journal of medical entomology.
[17] R. Guiguemdé,et al. Personal protection of long lasting insecticide-treated nets in areas of Anopheles gambiae s.s. resistance to pyrethroids , 2006, Malaria Journal.
[18] Karen Chuang,et al. High-throughput SNP genotyping by single-tube PCR with Tm-shift primers. , 2005, BioTechniques.
[19] C. Rogier,et al. Protective efficacy of lambda-cyhalothrin treated nets in Anopheles gambiae pyrethroid resistance areas of Côte d'Ivoire. , 2005, The American journal of tropical medicine and hygiene.
[20] M. Rowland,et al. Experimental hut evaluation of bednets treated with an organophosphate (chlorpyrifos-methyl) or a pyrethroid (lambdacyhalothrin) alone and in combination against insecticide-resistant Anopheles gambiae and Culex quinquefasciatus mosquitoes , 2005, Malaria Journal.
[21] C. Malcolm,et al. The unique mutation in ace‐1 giving high insecticide resistance is easily detectable in mosquito vectors , 2004, Insect molecular biology.
[22] Georges Lutfalla,et al. Comparative genomics: Insecticide resistance in mosquito vectors , 2003, Nature.
[23] P. Carnevale,et al. Resistance to carbosulfan in Anopheles gambiae from Ivory Coast, based on reduced sensitivity of acetylcholinesterase , 2003, Medical and veterinary entomology.
[24] M. Maroli,et al. Control of phlebotomine sandflies , 2003, Medical and veterinary entomology.
[25] P. Carnevale,et al. Combined pyrethroid and carbamate ‘two‐in‐one’ treated mosquito nets: field efficacy against pyrethroid‐resistant Anopheles gambiae and Culex quinquefasciatus , 2001, Medical and veterinary entomology.
[26] P. Carnevale,et al. [Impact of pyrethrin resistance on the efficacity of impregnated mosquito nets in the prevention of malaria: results of tests in experimental cases with deltamethrin SC]. , 2000, Bulletin de la Societe de pathologie exotique.
[27] C. Curtis,et al. Experimental and molecular genetic analysis of the impact of pyrethroid and non-pyrethroid insecticide impregnated bednets for mosquito control in an area of pyrethroid resistance , 2000, Bulletin of Entomological Research.
[28] F. Darriet,et al. Impact de la résistance aux pyréthrinoïdes sur l'efficacité des moustiquaires imprégnées dans la prévention du paludisme : résultats des essais en cases expérimentales avec la deltaméthrine SC. , 2000 .
[29] F. Chandre,et al. Distribution of organophosphate and carbamate resistance in Culex pipiens quinquefasciatus (Diptera: Culicidae) in West Africa. , 1997, Journal of medical entomology.
[30] Irina Afonina,et al. Efficient priming of PCR with short oligonucleotides conjugated to a minor groove binder , 1997, Nucleic Acids Res..
[31] B. Miller,et al. Use of genetic polymorphisms detected by the random-amplified polymorphic DNA polymerase chain reaction (RAPD-PCR) for differentiation and identification of Aedes aegypti subspecies and populations. , 1992, The American journal of tropical medicine and hygiene.
[32] K. Livak. Organization and mapping of a sequence on the Drosophila melanogaster X and Y chromosomes that is transcribed during spermatogenesis. , 1984, Genetics.