Search bioRxivSearch

Biology subjects

Gilleard, J.

Publications and source records attributed to Gilleard, J..

2 recordsLinked to original sources

Multiple Drug Resistance in the canine hookworm Ancylostoma caninum: an Emerging Threat

In the past few years, diagnoses by veterinarians of recurrent canine hookworm infections have dramatically increased, suggesting that anthelmintic resistance (AR) may have evolved in the parasite Ancylostoma caninum. To investigate this, we established three \"suspected-resistant\" and two susceptible A. caninum isolates in research dogs for further study. The egg hatch assay (EHA) and the larval development assay (LDA) were used for detecting resistance to benzimidazoles, and macrocyclic lactones, respectively. Resistance ratios ranged from 6.0 to >100 and 5.5-69.8 for the EHA and LDA, respectively. Following treatments with fenbendazole, pyrantel and milbemycin oxime, reduction in faecal egg counts ranged from 64-86%, 0-72% and 58-92%, respectively. Deep amplicon sequencing of the isotype-1 {beta} tubulin gene identified a high frequency of resistance-associated single nucleotide polymorphisms at codon 167 in the resistant isolates and clinical cases.. These data conclusively demonstrate multiple anthelmintic resistance in A. caninum, and provide pivotal evidence that this is an emerging problem in the United States. Consequently, these findings should provide some concern to the global health community, as the scale-up of mass drug administration for soil-transmitted helminths (STH) is now placing similar selection pressures for benzimidazole resistance in human hookworms.

zoology

Evidence for the F200Y (TAC) mutation conferring benzimidazole resistance in a southern USA cattle population of Haemonchus placei spreading from a single emergence

The benzimidazoles are one of the most important broad-spectrum anthelmintic drug classes for the control of parasitic nematodes of domestic animals and humans. They have been widely used in the livestock sector, particularly in small ruminants for over 40 years. This has resulted in the development and wide spread of resistance in small ruminant gastrointestinal nematode parasite species, including Haemonchus contortus. Recently, resistance to benzimidazole drugs has been reported in Haemonchus placei, but there is relatively little information on its prevalence. It is important to develop a molecular tools to identify resistance mutations in H. placei early in their development in order to understand the emergence and spread. Our previous study demonstrated the F200Y (TAC) mutation at their early stage in 6/9 H. placei populations derived from southern USA, albeit at low frequencies between 2 and 10%. The present study analysis the phylogenetics of the isotype-1 {beta}-tubulin locus to suggest that F200Y (TAC) mutation has been spread from a single emergence in H. placei; likely by the anthroprogenic movement of ruminant livestock in southern USA. Population genetic data of H. placei using a panel of microsatellite markers revealed little genetic sub-structure, consistent with a high level of gene flow in this region. Overall, these results provide clear genetic evidence for the spread of F200Y (TAC) benzimidazoles resistance mutation to multiple different locations from a single emergence in H. placei.

molecular biology