Cargando…

Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids

Insects exposed to pesticides undergo strong natural selection and have developed various adaptive mechanisms to survive. Resistance to pyrethroid insecticides in the malaria vector Anopheles gambiae is receiving increasing attention because it threatens the sustainability of malaria vector control...

Descripción completa

Detalles Bibliográficos
Autores principales: Müller, Pie, Warr, Emma, Stevenson, Bradley J., Pignatelli, Patricia M., Morgan, John C., Steven, Andrew, Yawson, Alexander E., Mitchell, Sara N., Ranson, Hilary, Hemingway, Janet, Paine, Mark J. I., Donnelly, Martin J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2583951/
https://www.ncbi.nlm.nih.gov/pubmed/19043575
http://dx.doi.org/10.1371/journal.pgen.1000286
_version_ 1782160748004245504
author Müller, Pie
Warr, Emma
Stevenson, Bradley J.
Pignatelli, Patricia M.
Morgan, John C.
Steven, Andrew
Yawson, Alexander E.
Mitchell, Sara N.
Ranson, Hilary
Hemingway, Janet
Paine, Mark J. I.
Donnelly, Martin J.
author_facet Müller, Pie
Warr, Emma
Stevenson, Bradley J.
Pignatelli, Patricia M.
Morgan, John C.
Steven, Andrew
Yawson, Alexander E.
Mitchell, Sara N.
Ranson, Hilary
Hemingway, Janet
Paine, Mark J. I.
Donnelly, Martin J.
author_sort Müller, Pie
collection PubMed
description Insects exposed to pesticides undergo strong natural selection and have developed various adaptive mechanisms to survive. Resistance to pyrethroid insecticides in the malaria vector Anopheles gambiae is receiving increasing attention because it threatens the sustainability of malaria vector control programs in sub-Saharan Africa. An understanding of the molecular mechanisms conferring pyrethroid resistance gives insight into the processes of evolution of adaptive traits and facilitates the development of simple monitoring tools and novel strategies to restore the efficacy of insecticides. For this purpose, it is essential to understand which mechanisms are important in wild mosquitoes. Here, our aim was to identify enzymes that may be important in metabolic resistance to pyrethroids by measuring gene expression for over 250 genes potentially involved in metabolic resistance in phenotyped individuals from a highly resistant, wild A. gambiae population from Ghana. A cytochrome P450, CYP6P3, was significantly overexpressed in the survivors, and we show that the translated enzyme metabolises both alpha-cyano and non–alpha-cyano pyrethroids. This is the first study to demonstrate the capacity of a P450 identified in wild A. gambiae to metabolise insecticides. The findings add to the understanding of the genetic basis of insecticide resistance in wild mosquito populations.
format Text
id pubmed-2583951
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-25839512008-11-28 Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids Müller, Pie Warr, Emma Stevenson, Bradley J. Pignatelli, Patricia M. Morgan, John C. Steven, Andrew Yawson, Alexander E. Mitchell, Sara N. Ranson, Hilary Hemingway, Janet Paine, Mark J. I. Donnelly, Martin J. PLoS Genet Research Article Insects exposed to pesticides undergo strong natural selection and have developed various adaptive mechanisms to survive. Resistance to pyrethroid insecticides in the malaria vector Anopheles gambiae is receiving increasing attention because it threatens the sustainability of malaria vector control programs in sub-Saharan Africa. An understanding of the molecular mechanisms conferring pyrethroid resistance gives insight into the processes of evolution of adaptive traits and facilitates the development of simple monitoring tools and novel strategies to restore the efficacy of insecticides. For this purpose, it is essential to understand which mechanisms are important in wild mosquitoes. Here, our aim was to identify enzymes that may be important in metabolic resistance to pyrethroids by measuring gene expression for over 250 genes potentially involved in metabolic resistance in phenotyped individuals from a highly resistant, wild A. gambiae population from Ghana. A cytochrome P450, CYP6P3, was significantly overexpressed in the survivors, and we show that the translated enzyme metabolises both alpha-cyano and non–alpha-cyano pyrethroids. This is the first study to demonstrate the capacity of a P450 identified in wild A. gambiae to metabolise insecticides. The findings add to the understanding of the genetic basis of insecticide resistance in wild mosquito populations. Public Library of Science 2008-11-28 /pmc/articles/PMC2583951/ /pubmed/19043575 http://dx.doi.org/10.1371/journal.pgen.1000286 Text en Müller et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Müller, Pie
Warr, Emma
Stevenson, Bradley J.
Pignatelli, Patricia M.
Morgan, John C.
Steven, Andrew
Yawson, Alexander E.
Mitchell, Sara N.
Ranson, Hilary
Hemingway, Janet
Paine, Mark J. I.
Donnelly, Martin J.
Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title_full Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title_fullStr Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title_full_unstemmed Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title_short Field-Caught Permethrin-Resistant Anopheles gambiae Overexpress CYP6P3, a P450 That Metabolises Pyrethroids
title_sort field-caught permethrin-resistant anopheles gambiae overexpress cyp6p3, a p450 that metabolises pyrethroids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2583951/
https://www.ncbi.nlm.nih.gov/pubmed/19043575
http://dx.doi.org/10.1371/journal.pgen.1000286
work_keys_str_mv AT mullerpie fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT warremma fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT stevensonbradleyj fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT pignatellipatriciam fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT morganjohnc fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT stevenandrew fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT yawsonalexandere fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT mitchellsaran fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT ransonhilary fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT hemingwayjanet fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT painemarkji fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids
AT donnellymartinj fieldcaughtpermethrinresistantanophelesgambiaeoverexpresscyp6p3ap450thatmetabolisespyrethroids