GEPHE SUMMARY Print
Gephebase Gene
Entry Status
Published
GepheID
GP00002448
Main curator
Courtier
PHENOTYPIC CHANGE
Trait Category
Trait State in Taxon A
Aedes aegypti
Trait State in Taxon B
Aedes aegypti - resistant selected strain
Ancestral State
Taxon A
Taxonomic Status
Taxon A
Latin Name
Common Name
yellow fever mosquito
Synonyms
Stegomyia aegypti; yellow fever mosquito; Aedes aegypti (Linnaeus, 1762)
Rank
species
Lineage
Show more ... ; Arthropoda; Mandibulata; Pancrustacea; Hexapoda; Insecta; Dicondylia; Pterygota; Neoptera; Holometabola; Diptera; Nematocera; Culicomorpha; Culicoidea; Culicidae; Culicinae; Aedini; Aedes; Stegomyia
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Latin Name
Common Name
yellow fever mosquito
Synonyms
Stegomyia aegypti; yellow fever mosquito; Aedes aegypti (Linnaeus, 1762)
Rank
species
Lineage
Show more ... ; Arthropoda; Mandibulata; Pancrustacea; Hexapoda; Insecta; Dicondylia; Pterygota; Neoptera; Holometabola; Diptera; Nematocera; Culicomorpha; Culicoidea; Culicidae; Culicinae; Aedini; Aedes; Stegomyia
NCBI Taxonomy ID
is Taxon B an Infraspecies?
No
GENOTYPIC CHANGE
Generic Gene Name
CYP9M6
Synonyms
CYP9M6; CYP9M6v1; CYP9M6v2; CYP9M6v3; CYP9M6v4; CYP9M6v5; AAEL001312
String
-
Sequence Similarities
Belongs to the cytochrome P450 family.
GO - Biological Process
-
UniProtKB
Aedes aegypti
GenebankID or UniProtKB
Aedes aegypti
Presumptive Null
No
Molecular Type
Aberration Type
Insertion Size
unknown
Molecular Details of the Mutation
CYP9M6 has the capability to metabolize permethrin and is over expressed in the resistant strain partially due to gene amplification. The average copy number of the CYP9M9 gene is 4.6-fold more than the standard strain based on qPCR.
Experimental Evidence
Authors
Kasai S; Komagata O; Itokawa K; Shono T; Ng LC; Kobayashi M; Tomita T
Abstract
Aedes aegypti is the major vector of yellow and dengue fevers. After 10 generations of adult selection, an A. aegypti strain (SP) developed 1650-fold resistance to permethrin, which is one of the most widely used pyrethroid insecticides for mosquito control. SP larvae also developed 8790-fold resistance following selection of the adults. Prior to the selections, the frequencies of V1016G and F1534C mutations in domains II and III, respectively, of voltage-sensitive sodium channel (Vssc, the target site of pyrethroid insecticide) were 0.44 and 0.56, respectively. In contrast, only G1016 alleles were present after two permethrin selections, indicating that G1016 can more contribute to the insensitivity of Vssc than C1534. In vivo metabolism studies showed that the SP strain excreted permethrin metabolites more rapidly than a susceptible SMK strain. Pretreatment with piperonyl butoxide caused strong inhibition of excretion of permethrin metabolites, suggesting that cytochrome P450 monooxygenases (P450s) play an important role in resistance development. In vitro metabolism studies also indicated an association of P450s with resistance. Microarray analysis showed that multiple P450 genes were over expressed during the larval and adult stages in the SP strain. Following quantitative real time PCR, we focused on two P450 isoforms, CYP9M6 and CYP6BB2. Transcription levels of these P450s were well correlated with the rate of permethrin excretion and they were certainly capable of detoxifying permethrin to 4'-HO-permethrin. Over expression of CYP9M6 was partially due to gene amplification. There was no significant difference in the rate of permethrin reduction from cuticle between SP and SMK strains.
RELATED GEPHE
Related Haplotypes
No matches found.
EXTERNAL LINKS
COMMENTS
After 10 generations of adult selection this A. aegypti strain noted SP developed 1650-fold resistance to permethrin. The gene was identified based on transcriptome comparison with a non selected strain.
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