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Genomic landscape of drug response reveals mediators of anthelmintic resistance

Like other pathogens, parasitic helminths can rapidly evolve resistance to drug treatment. Understanding the genetic basis of anthelmintic drug resistance in parasitic nematodes is key to tracking its spread and improving the efficacy and sustainability of parasite control. Here, we use an in vivo g...

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Autores principales: Doyle, Stephen R., Laing, Roz, Bartley, David, Morrison, Alison, Holroyd, Nancy, Maitland, Kirsty, Antonopoulos, Alistair, Chaudhry, Umer, Flis, Ilona, Howell, Sue, McIntyre, Jennifer, Gilleard, John S., Tait, Andy, Mable, Barbara, Kaplan, Ray, Sargison, Neil, Britton, Collette, Berriman, Matthew, Devaney, Eileen, Cotton, James A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9597552/
https://www.ncbi.nlm.nih.gov/pubmed/36261007
http://dx.doi.org/10.1016/j.celrep.2022.111522
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author Doyle, Stephen R.
Laing, Roz
Bartley, David
Morrison, Alison
Holroyd, Nancy
Maitland, Kirsty
Antonopoulos, Alistair
Chaudhry, Umer
Flis, Ilona
Howell, Sue
McIntyre, Jennifer
Gilleard, John S.
Tait, Andy
Mable, Barbara
Kaplan, Ray
Sargison, Neil
Britton, Collette
Berriman, Matthew
Devaney, Eileen
Cotton, James A.
author_facet Doyle, Stephen R.
Laing, Roz
Bartley, David
Morrison, Alison
Holroyd, Nancy
Maitland, Kirsty
Antonopoulos, Alistair
Chaudhry, Umer
Flis, Ilona
Howell, Sue
McIntyre, Jennifer
Gilleard, John S.
Tait, Andy
Mable, Barbara
Kaplan, Ray
Sargison, Neil
Britton, Collette
Berriman, Matthew
Devaney, Eileen
Cotton, James A.
author_sort Doyle, Stephen R.
collection PubMed
description Like other pathogens, parasitic helminths can rapidly evolve resistance to drug treatment. Understanding the genetic basis of anthelmintic drug resistance in parasitic nematodes is key to tracking its spread and improving the efficacy and sustainability of parasite control. Here, we use an in vivo genetic cross between drug-susceptible and multi-drug-resistant strains of Haemonchus contortus in a natural host-parasite system to simultaneously map resistance loci for the three major classes of anthelmintics. This approach identifies new alleles for resistance to benzimidazoles and levamisole and implicates the transcription factor cky-1 in ivermectin resistance. This gene is within a locus under selection in ivermectin-resistant populations worldwide; expression analyses and functional validation using knockdown experiments support that cky-1 is associated with ivermectin survival. Our work demonstrates the feasibility of high-resolution forward genetics in a parasitic nematode and identifies variants for the development of molecular diagnostics to combat drug resistance in the field.
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spelling pubmed-95975522022-10-27 Genomic landscape of drug response reveals mediators of anthelmintic resistance Doyle, Stephen R. Laing, Roz Bartley, David Morrison, Alison Holroyd, Nancy Maitland, Kirsty Antonopoulos, Alistair Chaudhry, Umer Flis, Ilona Howell, Sue McIntyre, Jennifer Gilleard, John S. Tait, Andy Mable, Barbara Kaplan, Ray Sargison, Neil Britton, Collette Berriman, Matthew Devaney, Eileen Cotton, James A. Cell Rep Resource Like other pathogens, parasitic helminths can rapidly evolve resistance to drug treatment. Understanding the genetic basis of anthelmintic drug resistance in parasitic nematodes is key to tracking its spread and improving the efficacy and sustainability of parasite control. Here, we use an in vivo genetic cross between drug-susceptible and multi-drug-resistant strains of Haemonchus contortus in a natural host-parasite system to simultaneously map resistance loci for the three major classes of anthelmintics. This approach identifies new alleles for resistance to benzimidazoles and levamisole and implicates the transcription factor cky-1 in ivermectin resistance. This gene is within a locus under selection in ivermectin-resistant populations worldwide; expression analyses and functional validation using knockdown experiments support that cky-1 is associated with ivermectin survival. Our work demonstrates the feasibility of high-resolution forward genetics in a parasitic nematode and identifies variants for the development of molecular diagnostics to combat drug resistance in the field. Cell Press 2022-10-18 /pmc/articles/PMC9597552/ /pubmed/36261007 http://dx.doi.org/10.1016/j.celrep.2022.111522 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Resource
Doyle, Stephen R.
Laing, Roz
Bartley, David
Morrison, Alison
Holroyd, Nancy
Maitland, Kirsty
Antonopoulos, Alistair
Chaudhry, Umer
Flis, Ilona
Howell, Sue
McIntyre, Jennifer
Gilleard, John S.
Tait, Andy
Mable, Barbara
Kaplan, Ray
Sargison, Neil
Britton, Collette
Berriman, Matthew
Devaney, Eileen
Cotton, James A.
Genomic landscape of drug response reveals mediators of anthelmintic resistance
title Genomic landscape of drug response reveals mediators of anthelmintic resistance
title_full Genomic landscape of drug response reveals mediators of anthelmintic resistance
title_fullStr Genomic landscape of drug response reveals mediators of anthelmintic resistance
title_full_unstemmed Genomic landscape of drug response reveals mediators of anthelmintic resistance
title_short Genomic landscape of drug response reveals mediators of anthelmintic resistance
title_sort genomic landscape of drug response reveals mediators of anthelmintic resistance
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9597552/
https://www.ncbi.nlm.nih.gov/pubmed/36261007
http://dx.doi.org/10.1016/j.celrep.2022.111522
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