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Shabbir, M. Z.

Publications and source records attributed to Shabbir, M. Z..

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Emergence and the spread of the F200Y benzimidazole resistance mutation in Haemonchus contortus and Haemonchus placei from buffalo and cattle

Benzimidazoles have been intensively used in the livestock sector, particularly in small ruminants for over 40 years. This has been led to the widespread emergence of resistance in a number of small ruminant parasite species, in particular Haemonchus contortus. In many counties benzimidazole resistance in the small ruminants H. contortus has become severely compromising its control; but there is a little information on benzimidazole resistance in H. contortus infecting buffalo and cattle. Resistance to benzimidazoles have also been reported in the large ruminant parasite, Haemonchus placei, but again there is relatively little information on its prevalence. Hence it is extremely important to understand how resistance-conferring mutations emerge and spread in both parasites in the buffalo and cattle host in order to develop the approaches for the recognition of the problem at an early stage of its development. The present study suggests that the F200Y (TAC) mutation is common in H. contortus, being detected in 5/7 populations at frequencies between 7 to 57%. Furthermore, 6/10 H. placei populations contained the F200Y (TAC) mutation, albeit at low frequencies of between 0.4 to 5%. The phylogenetic analysis suggests that the F200Y (TAC) mutation in H. contortus has emerged on multiple occasions in the region, with at least three independent emergence of resistance alleles across the populations. In contrast, the F200Y (TAC) resistance-conferring mutation in H. placei is only seen on a single haplotype. A high level of haplotype frequency of the susceptible alleles in the region, suggests that the unique resistance conferring-mutation has spread from a single emergence; likely by anthropogenic animal movement. Overall, these results provide the first clear genetic evidence for the spread of benzimidazoles resistance-conferring mutations to multiple different locations from a single emergence in H. placei; while supporting previous small ruminant-based observations of multiple emergence of resistance mutations in H. contortus.

genetics