CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.

Insecticide resistance is a worldwide threat for vector control around the world, and Aedes aegypti, the main vector of several arboviruses, is a particular concern. To better understand the mechanisms of resistance, four isofemale strains originally from French Guiana were isolated and analysed usi...

Full description

Bibliographic Details
Main Authors: Yanouk Epelboin, Lanjiao Wang, Quentin Giai Gianetto, Valérie Choumet, Pascal Gaborit, Jean Issaly, Amandine Guidez, Thibaut Douché, Thibault Chaze, Mariette Matondo, Isabelle Dusfour
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0243992
id doaj-3f484532e0024c649592c1da7fbe1dd1
record_format Article
spelling doaj-3f484532e0024c649592c1da7fbe1dd12021-04-27T04:30:25ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01161e024399210.1371/journal.pone.0243992CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.Yanouk EpelboinLanjiao WangQuentin Giai GianettoValérie ChoumetPascal GaboritJean IssalyAmandine GuidezThibaut DouchéThibault ChazeMariette MatondoIsabelle DusfourInsecticide resistance is a worldwide threat for vector control around the world, and Aedes aegypti, the main vector of several arboviruses, is a particular concern. To better understand the mechanisms of resistance, four isofemale strains originally from French Guiana were isolated and analysed using combined approaches. The activity of detoxification enzymes involved in insecticide resistance was assayed, and mutations located at positions 1016 and 1534 of the sodium voltage-gated channel gene, which have been associated with pyrethroid resistance in Aedes aegypti populations in Latin America, were monitored. Resistance to other insecticide families (organophosphates and carbamates) was evaluated. A large-scale proteomic analysis was performed to identify proteins involved in insecticide resistance. Our results revealed a metabolic resistance and resistance associated with a mutation of the sodium voltage-gated channel gene at position 1016. Metabolic resistance was mediated through an increase of esterase activity in most strains but also through the shifts in the abundance of several cytochrome P450 (CYP450s). Overall, resistance to deltamethrin was linked in the isofemale strains to resistance to other class of insecticides, suggesting that cross- and multiple resistance occur through selection of mechanisms of metabolic resistance. These results give some insights into resistance to deltamethrin and into multiple resistance phenomena in populations of Ae. aegypti.https://doi.org/10.1371/journal.pone.0243992
collection DOAJ
language English
format Article
sources DOAJ
author Yanouk Epelboin
Lanjiao Wang
Quentin Giai Gianetto
Valérie Choumet
Pascal Gaborit
Jean Issaly
Amandine Guidez
Thibaut Douché
Thibault Chaze
Mariette Matondo
Isabelle Dusfour
spellingShingle Yanouk Epelboin
Lanjiao Wang
Quentin Giai Gianetto
Valérie Choumet
Pascal Gaborit
Jean Issaly
Amandine Guidez
Thibaut Douché
Thibault Chaze
Mariette Matondo
Isabelle Dusfour
CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
PLoS ONE
author_facet Yanouk Epelboin
Lanjiao Wang
Quentin Giai Gianetto
Valérie Choumet
Pascal Gaborit
Jean Issaly
Amandine Guidez
Thibaut Douché
Thibault Chaze
Mariette Matondo
Isabelle Dusfour
author_sort Yanouk Epelboin
title CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
title_short CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
title_full CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
title_fullStr CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
title_full_unstemmed CYP450 core involvement in multiple resistance strains of Aedes aegypti from French Guiana highlighted by proteomics, molecular and biochemical studies.
title_sort cyp450 core involvement in multiple resistance strains of aedes aegypti from french guiana highlighted by proteomics, molecular and biochemical studies.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description Insecticide resistance is a worldwide threat for vector control around the world, and Aedes aegypti, the main vector of several arboviruses, is a particular concern. To better understand the mechanisms of resistance, four isofemale strains originally from French Guiana were isolated and analysed using combined approaches. The activity of detoxification enzymes involved in insecticide resistance was assayed, and mutations located at positions 1016 and 1534 of the sodium voltage-gated channel gene, which have been associated with pyrethroid resistance in Aedes aegypti populations in Latin America, were monitored. Resistance to other insecticide families (organophosphates and carbamates) was evaluated. A large-scale proteomic analysis was performed to identify proteins involved in insecticide resistance. Our results revealed a metabolic resistance and resistance associated with a mutation of the sodium voltage-gated channel gene at position 1016. Metabolic resistance was mediated through an increase of esterase activity in most strains but also through the shifts in the abundance of several cytochrome P450 (CYP450s). Overall, resistance to deltamethrin was linked in the isofemale strains to resistance to other class of insecticides, suggesting that cross- and multiple resistance occur through selection of mechanisms of metabolic resistance. These results give some insights into resistance to deltamethrin and into multiple resistance phenomena in populations of Ae. aegypti.
url https://doi.org/10.1371/journal.pone.0243992
work_keys_str_mv AT yanoukepelboin cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT lanjiaowang cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT quentingiaigianetto cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT valeriechoumet cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT pascalgaborit cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT jeanissaly cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT amandineguidez cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT thibautdouche cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT thibaultchaze cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT mariettematondo cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
AT isabelledusfour cyp450coreinvolvementinmultipleresistancestrainsofaedesaegyptifromfrenchguianahighlightedbyproteomicsmolecularandbiochemicalstudies
_version_ 1714655674997145600