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Frank Jackson

Publications and source records attributed to Frank Jackson.

7 recordsLinked to original sources

Detection and measurement of benzimidazole resistance alleles in Haemonchus contortus using real-time PCR with locked nucleic acid Taqman probes.

Benzimidazole resistance is a common problem in parasitic nematodes of ruminants and early detection is vital if its spread is to be monitored and controlled. Real time PCR offers a fast and reliable method for rapid detection and measurement of resistance allele frequencies. In Haemonchus contortus a single nucleotide polymorphism at codon 200 of the beta-tubulin gene (TTC to TAC), causing a phenylalanine to tyrosine amino acid substitution, has been shown to be involved in many cases of resistance. Locked nucleic acid (LNA) Taqman probes have been used in this work to detect and measure the frequency of resistance alleles in individual and multiple H. contortus. Detection of resistant genotypes using LNA Taqman probes in individual H. contortus is simpler and more reliable than with previously described assays. Measurement of the frequency of resistant alleles in populations of H. contortus was achieved by using the cycle threshold (C(t)) values and a standard curve derived from populations with known allele frequencies. Results using the LNA probes on individual and multiple worms gave similar results to the allele specific PCR. The sensitivity of the LNA assay on multiple nematodes allowed reliable detection of > or = 10% resistance allele frequency. Using the final fluorescence method, it was possible to differentiate populations with approximately 0, 5 and 10% resistance allele frequencies.

Alleles↗

Alternative approaches to control--quo vadit?

The increasing prevalence of anthelmintic resistance has provided a spur for research into 'alternative/novel' approaches to the control of helminthoses that are intended to reduce our reliance upon using chemoprophylaxis. The different approaches either target the parasite population in the host or on pasture, but the goal of all of them is to restrict host parasite contact to levels which minimise the impact of helminths on host welfare and/or performance. Infrapopulation regulation can be achieved through methods that enhance immunity such as optimised nutrition (immunonutrition), genetic selection and vaccination, or by an 'anthelmintic' route using bioactive forages, copper oxide wire particles, or use of targeted selective treatment strategies such as FAMACHA, which reduce the selection pressure for the development of resistance by maintaining a population in refugia. Suprapopulation control can be achieved through grazing management, or by using predacious fungi such as Duddingtonia flagrans. All of these approaches have been developed beyond the proof of concept stage and some are capable of being employed currently. However, some still require knowledge transfer, or commercialisation before they can be tested and widely applied in the field. All of the different approaches present unique challenges to the researchers engaged in developing them, and in comparison to simple prescriptive anthelmintic treatments, their use appears complex and requires some expertise on behalf of the advisor and/or end user. At present, most of our data are derived from trials using single approaches, but it is apparent that we need to move towards integrating some of these technologies which again represents a further challenge to the extension/advisory services. Progress in establishing different approaches requires not only the funding to support their scientific development but also to support the development of computer based models which can be used to highlight deficiencies in our understanding of the control mechanisms and to identify impediments to their introduction. It is inevitable that some of the approaches currently under investigation will fail to become widely applied for a variety of reasons that are not solely financial. These include issues concerned with practicability/applicability, affordability/appropriateness, availability/deliverability and above all, the failure to provide a consistent, reliable effect when used under commercial farming conditions.

Animal Husbandry↗

The effects of tannin-rich plants on parasitic nematodes in ruminants.

Apart from the obvious role of plants in herbivore nutrition, they are also a rich source of bioactive products that can operate either to the benefit or the detriment of grazing animals. Here, we review the available evidence for the potential beneficial effects that plant-derived bioactive substances can have on gastrointestinal parasites. Tannin-rich plants have attracted most attention for their effect on internal nematodes in ruminants. These plants could act through direct antiparasitic activity but might also act indirectly by increasing host resistance. The effects vary with the species of plant, parasite and host. More research is required to understand better the mechanisms of action, and therefore make more pertinent use of these bioactive plants in livestock systems.

Animal Feed↗

Characterisation of Teladorsagia circumcincta microsatellites and their development as population genetic markers.

There is a need to develop tools to study the genetics of parasitic nematodes. This is particularly urgent for those species in which anthelmintic resistance is common such as the sheep parasite Teladorsagia (Ostertagia) circumcincta. The lack of information on the population genetics of such parasites severely limits our ability to study the genetic basis of anthelmintic resistance. This paper presents the results of three approaches used to isolate microsatellite markers from T. circumcincta and the development of a panel of markers suitable for population genetic analysis. Hybridisation screening of small insert genomic libraries and interspecies PCR amplification of Haemonchus contortus microsatellites were used to identify CA/GT microsatellites. Many of these loci were associated with a 146bp tandem repeat, named TecRep, that is related to a repetitive element previously identified in other trichostrongylid nematode genomes but apparently absent from other nematode groups. A large proportion of the loci isolated were problematic for use as population genetic markers, predominantly due to a high frequency of null alleles or the association with the TecRep repeat. Bioinformatic screening of a T. circumcincta EST database identified both di- and tri-nucleotide microsatellite repeats and a greater proportion of these turned out to be more robust markers than those derived from genomic sequence. A panel of seven markers has been selected and characterised which are sufficiently robust and polymorphic to be valuable population genetic markers for this parasite.

Animals↗

Veterinary anthelmintics: old and new.

Between 1960 and 1980, extraordinary success was achieved in anthelmintic development for animals. In these 20 years, drugs with diverse structure, novel activity and enviable safety were produced for a global livestock industry leading to the productivity gains needed to support a human population that grew by 1.5 billion during the same period. The following 20 years have been spent refining existing molecules with niche activity (parasite and host specificity), improving delivery systems and worrying about the inexorable spread of drug resistance. The challenge for the next 20 years will be to use the technologies available to design and produce new drugs and biological controls. Then, to use the lessons of the past to ensure that the new drugs enjoy a longer useful lifespan and contribute to an animal health industry (livestock and companion) which enriches the lives of a global population. Old and new veterinary anthelmintics comprise a very large field, which could not be comprehensively reviewed in a short article. The present mini-review focuses on major chemical discoveries, formulation developments, administration strategies and new products.

Adaptation, Physiological↗

A survey of anthelmintic resistant nematode parasites in Scottish sheep flocks.

The state of anthelmintic resistance in Scottish sheep flocks was evaluated during April-August 2000 using in vitro bioassays, egg hatch assays for detecting thiabendazole (TBZ) resistance and larval development assays for levamisole, ivermectin and TBZ resistance. Anaerobic sampling kits and detailed questionnaires outlining farm demographics and current management practices were mailed to 227 Moredun Foundation member farms, replies were received from 98 farms. Kits received from 90 farms contained sufficient material to conduct one or more of the assays. A majority of the farms examined (64%) exhibited TBZ resistance but there were both farm locality and regional variations in the percentage of resistant farms. Teladorsagia was the predominant genera detected from farms. No resistance to levamisole or ivermectin was detected in any of the samples. There was no strong evidence from this survey that any of the management practices examined greatly affected TBZ resistance.

Animal Husbandry↗