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A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus

The most important and broad-spectrum drug used to control the parasitic worms to date is ivermectin (IVM). Resistance against IVM has emerged in parasites, and preserving its efficacy is now becoming a serious issue. The parasitic nematode Haemonchus contortus (Rudolphi, 1803) is economically an im...

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Autores principales: Khan, Sawar, Nisar, Ayesha, Yuan, Jianqi, Luo, Xiaoping, Dou, Xueqin, Liu, Fei, Zhao, Xiaochao, Li, Junyan, Ahmad, Habib, Mehmood, Sardar Azhar, Feng, Xingang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7230667/
https://www.ncbi.nlm.nih.gov/pubmed/32231078
http://dx.doi.org/10.3390/genes11040367
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author Khan, Sawar
Nisar, Ayesha
Yuan, Jianqi
Luo, Xiaoping
Dou, Xueqin
Liu, Fei
Zhao, Xiaochao
Li, Junyan
Ahmad, Habib
Mehmood, Sardar Azhar
Feng, Xingang
author_facet Khan, Sawar
Nisar, Ayesha
Yuan, Jianqi
Luo, Xiaoping
Dou, Xueqin
Liu, Fei
Zhao, Xiaochao
Li, Junyan
Ahmad, Habib
Mehmood, Sardar Azhar
Feng, Xingang
author_sort Khan, Sawar
collection PubMed
description The most important and broad-spectrum drug used to control the parasitic worms to date is ivermectin (IVM). Resistance against IVM has emerged in parasites, and preserving its efficacy is now becoming a serious issue. The parasitic nematode Haemonchus contortus (Rudolphi, 1803) is economically an important parasite of small ruminants across the globe, which has a successful track record in IVM resistance. There are growing evidences regarding the multigenic nature of IVM resistance, and although some genes have been proposed as candidates of IVM resistance using lower magnification of genome, the genetic basis of IVM resistance still remains poorly resolved. Using the full magnification of genome, we herein applied a population genomics approach to characterize genome-wide signatures of selection among pooled worms from two susceptible and six ivermectin-resistant isolates of H. contortus, and revealed candidate genes under selection in relation to IVM resistance. These candidates also included a previously known IVM-resistance-associated candidate gene HCON_00148840, glc-3. Finally, an RNA-interference-based functional validation assay revealed the HCON_00143950 as IVM-tolerance-associated gene in H. contortus. The possible role of this gene in IVM resistance could be detoxification of xenobiotic in phase I of xenobiotic metabolism. The results of this study further enhance our understanding on the IVM resistance and continue to provide further evidence in favor of multigenic nature of IVM resistance.
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spelling pubmed-72306672020-05-22 A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus Khan, Sawar Nisar, Ayesha Yuan, Jianqi Luo, Xiaoping Dou, Xueqin Liu, Fei Zhao, Xiaochao Li, Junyan Ahmad, Habib Mehmood, Sardar Azhar Feng, Xingang Genes (Basel) Article The most important and broad-spectrum drug used to control the parasitic worms to date is ivermectin (IVM). Resistance against IVM has emerged in parasites, and preserving its efficacy is now becoming a serious issue. The parasitic nematode Haemonchus contortus (Rudolphi, 1803) is economically an important parasite of small ruminants across the globe, which has a successful track record in IVM resistance. There are growing evidences regarding the multigenic nature of IVM resistance, and although some genes have been proposed as candidates of IVM resistance using lower magnification of genome, the genetic basis of IVM resistance still remains poorly resolved. Using the full magnification of genome, we herein applied a population genomics approach to characterize genome-wide signatures of selection among pooled worms from two susceptible and six ivermectin-resistant isolates of H. contortus, and revealed candidate genes under selection in relation to IVM resistance. These candidates also included a previously known IVM-resistance-associated candidate gene HCON_00148840, glc-3. Finally, an RNA-interference-based functional validation assay revealed the HCON_00143950 as IVM-tolerance-associated gene in H. contortus. The possible role of this gene in IVM resistance could be detoxification of xenobiotic in phase I of xenobiotic metabolism. The results of this study further enhance our understanding on the IVM resistance and continue to provide further evidence in favor of multigenic nature of IVM resistance. MDPI 2020-03-28 /pmc/articles/PMC7230667/ /pubmed/32231078 http://dx.doi.org/10.3390/genes11040367 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Sawar
Nisar, Ayesha
Yuan, Jianqi
Luo, Xiaoping
Dou, Xueqin
Liu, Fei
Zhao, Xiaochao
Li, Junyan
Ahmad, Habib
Mehmood, Sardar Azhar
Feng, Xingang
A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title_full A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title_fullStr A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title_full_unstemmed A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title_short A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus
title_sort whole genome re-sequencing based gwa analysis reveals candidate genes associated with ivermectin resistance in haemonchus contortus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7230667/
https://www.ncbi.nlm.nih.gov/pubmed/32231078
http://dx.doi.org/10.3390/genes11040367
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