Javascript must be enabled to continue!
Knockdown-resistance (kdr) mutations in Indian Aedes aegypti populations: Lack of recombination among haplotypes bearing V1016G, F1534C, and F1534L kdr alleles
View through CrossRef
Background
Knockdown resistance (kdr) mutations in the voltage-gated sodium channel (VGSC) gene are a key mechanism of insecticide resistance in mosquitoes. In Asian Aedes aegypti populations two main VGSC haplogroups with kdr mutations have been identified: one carrying the F1534C mutation and another with V1016G and/or S989P mutations. Previous functional studies have demonstrated that these three mutations on a single haplotype confer up to a 1100-fold increase in pyrethroid resistance, underscoring the importance of monitoring these triple mutations in distinct populations. This study investigates the prevalence of kdr mutations in Indian populations and explores the linkage association between these mutations and two distinct conserved types of introns located between exons 20 and 21.
Methods
Ae. aegypti specimens collected from eight different locations were genotyped for kdr alleles and intron (between exons 20 and 21) haplotypes using PCR-based assays. Representative samples underwent DNA sequencing of VGSC regions.
Results
Five kdr mutations namely S989P, V1016G, T1520I, F1534C, and F1534L were identified, each exhibiting varying distribution and frequencies across different geographical regions. Two distinct and stably-diverged intron haplotypes, designated as intron-A and intron-B, were identified between exons 20 and 21. Seven haplotypes, including two wild-type variants, were observed among Indian populations. The kdr-bearing haplotypes can be classified into three distinct haplogroups: haplogroup G (V1016G with/or without S989P and with intron-A), haplogroup L (F1534L and intron-A), and haplogroup C (F1534C with/or without T1520I and with intron-B). Importantly, no evidence of recombination within Indian populations was detected among these three haplogroups.
Conclusions
Five kdr mutations were identified in the VGSC of Indian Ae. aegypti populations, each showing a definitive linkage with one of the two types of intron haplotypes. The lack of recombination among haplogroups bearing 1016G with 989P, 1534C and 1534L mutations suggests that the most potent insecticide resistance haplotype, bearing the triple kdr mutation, is currently absent. This finding has significant operational implications, as it may indicate that current vector control measures remain effective against these populations, potentially delaying the emergence of highly resistant phenotypes.
Title: Knockdown-resistance (kdr) mutations in Indian Aedes aegypti populations: Lack of recombination among haplotypes bearing V1016G, F1534C, and F1534L kdr alleles
Description:
Background
Knockdown resistance (kdr) mutations in the voltage-gated sodium channel (VGSC) gene are a key mechanism of insecticide resistance in mosquitoes.
In Asian Aedes aegypti populations two main VGSC haplogroups with kdr mutations have been identified: one carrying the F1534C mutation and another with V1016G and/or S989P mutations.
Previous functional studies have demonstrated that these three mutations on a single haplotype confer up to a 1100-fold increase in pyrethroid resistance, underscoring the importance of monitoring these triple mutations in distinct populations.
This study investigates the prevalence of kdr mutations in Indian populations and explores the linkage association between these mutations and two distinct conserved types of introns located between exons 20 and 21.
Methods
Ae.
aegypti specimens collected from eight different locations were genotyped for kdr alleles and intron (between exons 20 and 21) haplotypes using PCR-based assays.
Representative samples underwent DNA sequencing of VGSC regions.
Results
Five kdr mutations namely S989P, V1016G, T1520I, F1534C, and F1534L were identified, each exhibiting varying distribution and frequencies across different geographical regions.
Two distinct and stably-diverged intron haplotypes, designated as intron-A and intron-B, were identified between exons 20 and 21.
Seven haplotypes, including two wild-type variants, were observed among Indian populations.
The kdr-bearing haplotypes can be classified into three distinct haplogroups: haplogroup G (V1016G with/or without S989P and with intron-A), haplogroup L (F1534L and intron-A), and haplogroup C (F1534C with/or without T1520I and with intron-B).
Importantly, no evidence of recombination within Indian populations was detected among these three haplogroups.
Conclusions
Five kdr mutations were identified in the VGSC of Indian Ae.
aegypti populations, each showing a definitive linkage with one of the two types of intron haplotypes.
The lack of recombination among haplogroups bearing 1016G with 989P, 1534C and 1534L mutations suggests that the most potent insecticide resistance haplotype, bearing the triple kdr mutation, is currently absent.
This finding has significant operational implications, as it may indicate that current vector control measures remain effective against these populations, potentially delaying the emergence of highly resistant phenotypes.
Related Results
Knockdown-resistance (
kdr
) mutations in Indian
Aedes aegypti
populations: lack of recombination among haplotypes bearing V1016G, F1534C, and F1534L
kdr
Knockdown-resistance (
kdr
) mutations in Indian
Aedes aegypti
populations: lack of recombination among haplotypes bearing V1016G, F1534C, and F1534L
kdr
Abstract
Background
Knockdown resistance (
kdr
) mutations in the ...
Insecticide Resistance in Aedes aegypti Mosquitoes: First Evidence of Kdr F1534C, S989P and V1016G Triple Mutation in Benin, West Africa
Insecticide Resistance in Aedes aegypti Mosquitoes: First Evidence of Kdr F1534C, S989P and V1016G Triple Mutation in Benin, West Africa
Epidemics of arboviruses in general, and dengue fever, in particular, are an increasing threat in areas where Aedes (Ae.) aegypti is present. The effectiveness of chemical control ...
Association of 410L, 1016I and 1534C kdr mutations with pyrethroid resistance in Aedes aegypti from Ouagadougou, Burkina Faso, and development of a one-step multiplex PCR method for the simultaneous detection of 1534C and 1016I kdr mutations
Association of 410L, 1016I and 1534C kdr mutations with pyrethroid resistance in Aedes aegypti from Ouagadougou, Burkina Faso, and development of a one-step multiplex PCR method for the simultaneous detection of 1534C and 1016I kdr mutations
Abstract
Background: Since 2000, Burkina Faso has experienced regular dengue cases and outbreaks making dengue a health concern for the country. Previous studies in Burkina...
Electrophysiological identification of site‐insensitive mechanisms in knockdown‐resistant strains (kdr, super‐kdr) of the housefly larva (Musca domestica)
Electrophysiological identification of site‐insensitive mechanisms in knockdown‐resistant strains (kdr, super‐kdr) of the housefly larva (Musca domestica)
AbstractThe effects of pyrethroids were studied upon isolated segmental nerves and neuromuscular junctions in both susceptible (Cooper) and knockdown‐resistant (kdr; super‐kdr) str...
Overcoming
super‐knock down resistance
(
super‐kdr
) mediated resistance: multi‐halogenated benzyl pyrethroids are more toxic to
super‐kdr
Overcoming
super‐knock down resistance
(
super‐kdr
) mediated resistance: multi‐halogenated benzyl pyrethroids are more toxic to
super‐kdr
Abstract
Target site insensitivity because of mutations in the voltage‐sensitive sodium channel gene (
Vssc
...
First report of kdr mutations in the voltage-gated sodium channel gene in the arbovirus vector, Aedes aegypti, from Nouakchott, Mauritania
First report of kdr mutations in the voltage-gated sodium channel gene in the arbovirus vector, Aedes aegypti, from Nouakchott, Mauritania
Abstract
Background
Since 2014, dengue epidemics have occurred almost annually in Nouakchott, the capital city of Mauritania, coinciding with the re...
Mechanisms associated with pyrethroid resistance in populations of
Aedes aegypti
(Diptera: Culicidae) from the Caribbean coast of Colombia
Mechanisms associated with pyrethroid resistance in populations of
Aedes aegypti
(Diptera: Culicidae) from the Caribbean coast of Colombia
Abstract
Aedes aegypti
is the main vector of dengue, chikungunya, and Zika viruses, which are of great public health importance...
PERBANDINGAN EFEKTIVITAS EKSTRAK ETANOL BIJI PEPAYA (Carica papaya L) SEBAGAI LARVASIDA PADA LARVA Aedes aegypti DAN Aedes albopictus INSTAR III-IV
PERBANDINGAN EFEKTIVITAS EKSTRAK ETANOL BIJI PEPAYA (Carica papaya L) SEBAGAI LARVASIDA PADA LARVA Aedes aegypti DAN Aedes albopictus INSTAR III-IV
Aedes aegypti dan Aedes albopictus merupakan vektor utama penyakit demam dengue, chikungunya, filariasis, dan virus zika yang masih menjadi masalah di Indonesia. Pengendalian vekto...

