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Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine

Control of tropical theileriosis, caused by the apicomplexan Theileria annulata, depends on the use of a single drug, buparvaquone, the efficacy of which is compromised by the emergence of resistance. The present study was undertaken to improve understanding of the role of mutations conferring bupar...

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Autores principales: Ali, Qasim, Zahid, Osama, Mhadhbi, Moez, Jones, Ben, Darghouth, Mohamed Aziz, Raynes, George, Afshan, Kiran, Birtles, Richard, Sargison, Neil D., Betson, Martha, Chaudhry, Umer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9529669/
https://www.ncbi.nlm.nih.gov/pubmed/36183440
http://dx.doi.org/10.1016/j.ijpddr.2022.08.004
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author Ali, Qasim
Zahid, Osama
Mhadhbi, Moez
Jones, Ben
Darghouth, Mohamed Aziz
Raynes, George
Afshan, Kiran
Birtles, Richard
Sargison, Neil D.
Betson, Martha
Chaudhry, Umer
author_facet Ali, Qasim
Zahid, Osama
Mhadhbi, Moez
Jones, Ben
Darghouth, Mohamed Aziz
Raynes, George
Afshan, Kiran
Birtles, Richard
Sargison, Neil D.
Betson, Martha
Chaudhry, Umer
author_sort Ali, Qasim
collection PubMed
description Control of tropical theileriosis, caused by the apicomplexan Theileria annulata, depends on the use of a single drug, buparvaquone, the efficacy of which is compromised by the emergence of resistance. The present study was undertaken to improve understanding of the role of mutations conferring buparvaquone resistance in T. annulata, and the effects of selection pressures on their emergence and spread. First, we investigated genetic characteristics of the cytochrome b locus associated with buparvaquone resistance in 10 susceptible and 7 resistant T. annulata isolates. The 129G (GGC) mutation was found in the Q(01) binding pocket and 253S (TCT) and 262S (TCA) mutations were identified within the Q(02) binding pocket. Next, we examined field isolates and identified cytochrome b mutations 129G (GGC), 253S (TCT) and 262S (TCA) in 21/75 buffalo-derived and 19/119 cattle-derived T. annulata isolates, providing evidence of positive selection pressure. Both hard and soft selective sweeps were identified, with striking differences between isolates. For example, 19 buffalo-derived and 7 cattle-derived isolates contained 129G (GGC) and 253S (TCT) resistance haplotypes at a high frequency, implying the emergence of resistance by a single mutation. Two buffalo-derived and 12 cattle-derived isolates contained equally high frequencies of 129G (GGC), 253S (TCT), 129G (GGC)/253S (TCT) and 262S (TCA) resistance haplotypes, implying the emergence of resistance by pre-existing or recurrent mutations. Phylogenetic analysis further revealed that 9 and 21 unique haplotypes in buffalo and cattle-derived isolates were present in a single lineage, suggesting a single origin. We propose that animal migration between farms is an important factor in the spread of buparvaquone resistance in endemic regions of Pakistan. The overall outcomes will be useful in understanding how drug resistance emerges and spreads, and this information will help design strategies to optimise the use and lifespan of the single most drug use to control tropical theileriosis.
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spelling pubmed-95296692022-10-05 Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine Ali, Qasim Zahid, Osama Mhadhbi, Moez Jones, Ben Darghouth, Mohamed Aziz Raynes, George Afshan, Kiran Birtles, Richard Sargison, Neil D. Betson, Martha Chaudhry, Umer Int J Parasitol Drugs Drug Resist Regular article Control of tropical theileriosis, caused by the apicomplexan Theileria annulata, depends on the use of a single drug, buparvaquone, the efficacy of which is compromised by the emergence of resistance. The present study was undertaken to improve understanding of the role of mutations conferring buparvaquone resistance in T. annulata, and the effects of selection pressures on their emergence and spread. First, we investigated genetic characteristics of the cytochrome b locus associated with buparvaquone resistance in 10 susceptible and 7 resistant T. annulata isolates. The 129G (GGC) mutation was found in the Q(01) binding pocket and 253S (TCT) and 262S (TCA) mutations were identified within the Q(02) binding pocket. Next, we examined field isolates and identified cytochrome b mutations 129G (GGC), 253S (TCT) and 262S (TCA) in 21/75 buffalo-derived and 19/119 cattle-derived T. annulata isolates, providing evidence of positive selection pressure. Both hard and soft selective sweeps were identified, with striking differences between isolates. For example, 19 buffalo-derived and 7 cattle-derived isolates contained 129G (GGC) and 253S (TCT) resistance haplotypes at a high frequency, implying the emergence of resistance by a single mutation. Two buffalo-derived and 12 cattle-derived isolates contained equally high frequencies of 129G (GGC), 253S (TCT), 129G (GGC)/253S (TCT) and 262S (TCA) resistance haplotypes, implying the emergence of resistance by pre-existing or recurrent mutations. Phylogenetic analysis further revealed that 9 and 21 unique haplotypes in buffalo and cattle-derived isolates were present in a single lineage, suggesting a single origin. We propose that animal migration between farms is an important factor in the spread of buparvaquone resistance in endemic regions of Pakistan. The overall outcomes will be useful in understanding how drug resistance emerges and spreads, and this information will help design strategies to optimise the use and lifespan of the single most drug use to control tropical theileriosis. Elsevier 2022-08-27 /pmc/articles/PMC9529669/ /pubmed/36183440 http://dx.doi.org/10.1016/j.ijpddr.2022.08.004 Text en © 2022 Published by Elsevier Ltd on behalf of Australian Society for Parasitology. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Regular article
Ali, Qasim
Zahid, Osama
Mhadhbi, Moez
Jones, Ben
Darghouth, Mohamed Aziz
Raynes, George
Afshan, Kiran
Birtles, Richard
Sargison, Neil D.
Betson, Martha
Chaudhry, Umer
Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title_full Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title_fullStr Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title_full_unstemmed Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title_short Genetic characterisation of the Theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
title_sort genetic characterisation of the theileria annulata cytochrome b locus and its impact on buparvaquone resistance in bovine
topic Regular article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9529669/
https://www.ncbi.nlm.nih.gov/pubmed/36183440
http://dx.doi.org/10.1016/j.ijpddr.2022.08.004
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