Cargando…

High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors

Surveillance of malaria vector species and the monitoring of insecticide resistance are essential to inform malaria control strategies and support the reduction of infections and disease. Genetic barcoding of mosquitoes is a useful tool to assist the high-throughput surveillance of insecticide resis...

Descripción completa

Detalles Bibliográficos
Autores principales: Campos, Monica, Phelan, Jody, Spadar, Anton, Collins, Emma, Gonçalves, Adéritow, Pelloquin, Bethanie, Vaselli, Natasha Marcella, Meiwald, Anne, Clark, Emma, Stica, Caleb, Orsborne, James, Sylla, Moussa, Edi, Constant, Camara, Denka, Mohammed, Abdul Rahim, Afrane, Yaw Asare, Kristan, Mojca, Walker, Thomas, Gomez, Lara Ferrero, Messenger, Louisa A., Clark, Taane G., Campino, Susana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9381500/
https://www.ncbi.nlm.nih.gov/pubmed/35974073
http://dx.doi.org/10.1038/s41598-022-17822-8
_version_ 1784769092938366976
author Campos, Monica
Phelan, Jody
Spadar, Anton
Collins, Emma
Gonçalves, Adéritow
Pelloquin, Bethanie
Vaselli, Natasha Marcella
Meiwald, Anne
Clark, Emma
Stica, Caleb
Orsborne, James
Sylla, Moussa
Edi, Constant
Camara, Denka
Mohammed, Abdul Rahim
Afrane, Yaw Asare
Kristan, Mojca
Walker, Thomas
Gomez, Lara Ferrero
Messenger, Louisa A.
Clark, Taane G.
Campino, Susana
author_facet Campos, Monica
Phelan, Jody
Spadar, Anton
Collins, Emma
Gonçalves, Adéritow
Pelloquin, Bethanie
Vaselli, Natasha Marcella
Meiwald, Anne
Clark, Emma
Stica, Caleb
Orsborne, James
Sylla, Moussa
Edi, Constant
Camara, Denka
Mohammed, Abdul Rahim
Afrane, Yaw Asare
Kristan, Mojca
Walker, Thomas
Gomez, Lara Ferrero
Messenger, Louisa A.
Clark, Taane G.
Campino, Susana
author_sort Campos, Monica
collection PubMed
description Surveillance of malaria vector species and the monitoring of insecticide resistance are essential to inform malaria control strategies and support the reduction of infections and disease. Genetic barcoding of mosquitoes is a useful tool to assist the high-throughput surveillance of insecticide resistance, discriminate between sibling species and to detect the presence of Plasmodium infections. In this study, we combined multiplex PCR, custom designed dual indexing, and Illumina next generation sequencing for high throughput single nucleotide polymorphism (SNP)-profiling of four species from the Anopheles (An.) gambiae complex (An. gambiae sensu stricto, An. coluzzii, An. arabiensis and An. melas). By amplifying and sequencing only 14 genetic fragments (500 bp each), we were able to simultaneously detect Plasmodium infection; insecticide resistance-conferring SNPs in ace1, gste2, vgsc and rdl genes; the partial sequences of nuclear ribosomal internal transcribed spacers (ITS1 and ITS2) and intergenic spacers (IGS), Short INterspersed Elements (SINE), as well as mitochondrial genes (cox1 and nd4) for species identification and genetic diversity. Using this amplicon sequencing approach with the four selected An. gambiae complex species, we identified a total of 15 non-synonymous mutations in the insecticide target genes, including previously described mutations associated with resistance and two new mutations (F1525L in vgsc and D148E in gste2). Overall, we present a reliable and cost-effective high-throughput panel for surveillance of An. gambiae complex mosquitoes in malaria endemic regions.
format Online
Article
Text
id pubmed-9381500
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-93815002022-08-18 High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors Campos, Monica Phelan, Jody Spadar, Anton Collins, Emma Gonçalves, Adéritow Pelloquin, Bethanie Vaselli, Natasha Marcella Meiwald, Anne Clark, Emma Stica, Caleb Orsborne, James Sylla, Moussa Edi, Constant Camara, Denka Mohammed, Abdul Rahim Afrane, Yaw Asare Kristan, Mojca Walker, Thomas Gomez, Lara Ferrero Messenger, Louisa A. Clark, Taane G. Campino, Susana Sci Rep Article Surveillance of malaria vector species and the monitoring of insecticide resistance are essential to inform malaria control strategies and support the reduction of infections and disease. Genetic barcoding of mosquitoes is a useful tool to assist the high-throughput surveillance of insecticide resistance, discriminate between sibling species and to detect the presence of Plasmodium infections. In this study, we combined multiplex PCR, custom designed dual indexing, and Illumina next generation sequencing for high throughput single nucleotide polymorphism (SNP)-profiling of four species from the Anopheles (An.) gambiae complex (An. gambiae sensu stricto, An. coluzzii, An. arabiensis and An. melas). By amplifying and sequencing only 14 genetic fragments (500 bp each), we were able to simultaneously detect Plasmodium infection; insecticide resistance-conferring SNPs in ace1, gste2, vgsc and rdl genes; the partial sequences of nuclear ribosomal internal transcribed spacers (ITS1 and ITS2) and intergenic spacers (IGS), Short INterspersed Elements (SINE), as well as mitochondrial genes (cox1 and nd4) for species identification and genetic diversity. Using this amplicon sequencing approach with the four selected An. gambiae complex species, we identified a total of 15 non-synonymous mutations in the insecticide target genes, including previously described mutations associated with resistance and two new mutations (F1525L in vgsc and D148E in gste2). Overall, we present a reliable and cost-effective high-throughput panel for surveillance of An. gambiae complex mosquitoes in malaria endemic regions. Nature Publishing Group UK 2022-08-16 /pmc/articles/PMC9381500/ /pubmed/35974073 http://dx.doi.org/10.1038/s41598-022-17822-8 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Campos, Monica
Phelan, Jody
Spadar, Anton
Collins, Emma
Gonçalves, Adéritow
Pelloquin, Bethanie
Vaselli, Natasha Marcella
Meiwald, Anne
Clark, Emma
Stica, Caleb
Orsborne, James
Sylla, Moussa
Edi, Constant
Camara, Denka
Mohammed, Abdul Rahim
Afrane, Yaw Asare
Kristan, Mojca
Walker, Thomas
Gomez, Lara Ferrero
Messenger, Louisa A.
Clark, Taane G.
Campino, Susana
High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title_full High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title_fullStr High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title_full_unstemmed High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title_short High-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in Anopheles gambiae complex malaria vectors
title_sort high-throughput barcoding method for the genetic surveillance of insecticide resistance and species identification in anopheles gambiae complex malaria vectors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9381500/
https://www.ncbi.nlm.nih.gov/pubmed/35974073
http://dx.doi.org/10.1038/s41598-022-17822-8
work_keys_str_mv AT camposmonica highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT phelanjody highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT spadaranton highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT collinsemma highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT goncalvesaderitow highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT pelloquinbethanie highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT vasellinatashamarcella highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT meiwaldanne highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT clarkemma highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT sticacaleb highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT orsbornejames highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT syllamoussa highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT ediconstant highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT camaradenka highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT mohammedabdulrahim highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT afraneyawasare highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT kristanmojca highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT walkerthomas highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT gomezlaraferrero highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT messengerlouisaa highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT clarktaaneg highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors
AT campinosusana highthroughputbarcodingmethodforthegeneticsurveillanceofinsecticideresistanceandspeciesidentificationinanophelesgambiaecomplexmalariavectors