Literature DB >> 18723882

Quantitative trait loci mapping of genome regions controlling permethrin resistance in the mosquito Aedes aegypti.

Karla Saavedra-Rodriguez1, Clare Strode, Adriana Flores Suarez, Ildefonso Fernandez Salas, Hilary Ranson, Janet Hemingway, William C Black.   

Abstract

The mosquito Aedes aegypti is the principal vector of dengue and yellow fever flaviviruses. Permethrin is an insecticide used to suppress Ae. aegypti adult populations but metabolic and target site resistance to pyrethroids has evolved in many locations worldwide. Quantitative trait loci (QTL) controlling permethrin survival in Ae. aegypti were mapped in an F(3) advanced intercross line. Parents came from a collection of mosquitoes from Isla Mujeres, México, that had been selected for permethrin resistance for two generations and a reference permethrin-susceptible strain originally from New Orleans. Following a 1-hr permethrin exposure, 439 F(3) adult mosquitoes were phenotyped as knockdown resistant, knocked down/recovered, or dead. For QTL mapping, single nucleotide polymorphisms (SNPs) were identified at 22 loci with potential antixenobiotic activity including genes encoding cytochrome P450s (CYP), esterases (EST), or glutathione transferases (GST) and at 12 previously mapped loci. Seven antixenobiotic genes mapped to chromosome I, six to chromosome II, and nine to chromosome III. Two QTL of major effect were detected on chromosome III. One corresponds with a SNP previously associated with permethrin resistance in the para sodium channel gene and the second with the CCEunk7o esterase marker. Additional QTL but of relatively minor effect were also found. These included two sex-linked QTL on chromosome I affecting knockdown and recovery and a QTL affecting survival and recovery. On chromosome II, one QTL affecting survival and a second affecting recovery were detected. The patterns confirm that mutations in the para gene cause target-site insensitivity and are the major source of permethrin resistance but that other genes dispersed throughout the genome contribute to recovery and survival of mosquitoes following permethrin exposure.

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Year:  2008        PMID: 18723882      PMCID: PMC2567363          DOI: 10.1534/genetics.108.087924

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  36 in total

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Authors:  J A Ferrari; G P Georghiou
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6.  Molecular mapping of insecticide resistance genes in the yellow fever mosquito (Aedes aegypti).

Authors:  D W Severson; N M Anthony; O Andreev; R H ffrench-Constant
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Review 8.  The molecular biology of knockdown resistance to pyrethroid insecticides.

Authors:  D M Soderlund; D C Knipple
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9.  A mutation in the voltage-gated sodium channel gene associated with pyrethroid resistance in Latin American Aedes aegypti.

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  40 in total

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Review 2.  Fine-mapping QTLs in advanced intercross lines and other outbred populations.

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3.  Transcription of detoxification genes after permethrin selection in the mosquito Aedes aegypti.

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Review 5.  Dengue research opportunities in the Americas.

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7.  Differential transcription profiles in Aedes aegypti detoxification genes after temephos selection.

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9.  Susceptibility to chlorpyrifos in pyrethroid-resistant populations of Aedes aegypti (Diptera: Culicidae) from Mexico.

Authors:  Beatriz Lopez; Gustavo Ponce; Jessica A Gonzalez; Selene M Gutierrez; Olga K Villanueva; Gabriela Gonzalez; Cristina Bobadilla; Iram P Rodriguez; William C Black; Adriana E Flores
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10.  Recent rapid rise of a permethrin knock down resistance allele in Aedes aegypti in México.

Authors:  Gustavo Ponce García; Adriana E Flores; Ildefonso Fernández-Salas; Karla Saavedra-Rodríguez; Guadalupe Reyes-Solis; Saul Lozano-Fuentes; J Guillermo Bond; Mauricio Casas-Martínez; Janine M Ramsey; Julián García-Rejón; Marco Domínguez-Galera; Hilary Ranson; Janet Hemingway; Lars Eisen; William C Black IV
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