Webster Lucy M I, Johnson Paul C D, Adam Aileen, Mable Barbara K, Keller Lukas F
Division of Environmental and Evolutionary Biology, Institute of Biological and Life Sciences, Graham Kerr Building, University of Glasgow, Glasgow G128QQ, UK.
Vet Parasitol. 2008 Dec 20;158(4):302-10. doi: 10.1016/j.vetpar.2008.09.029. Epub 2008 Oct 18.
Benzimidazole (BZ) resistance is widespread in nematode parasites of livestock, but very little is known about the levels of BZ resistance in parasites with avian hosts. We investigated BZ resistance in Trichostrongylus tenuis, a nematode parasite of red grouse, Lagopus lagopus scotica. BZ anthelmintics had been in use in this system for up to 15 years, yet existing phenotypic evidence for resistance was inconclusive. We screened 1530 individuals from 14 populations at the principal beta-tubulin locus for BZ resistance (isotype 1, residue 200) and 940 of these at two further resistance sites (isotype 1, residue 167; isotype 2, residue 200). No BZ resistant genotypes were found. Alternative mechanisms may be responsible for BZ resistance in this system, or the method and timing of treatments may reduce selection pressure for BZ resistance by creating substantial refugia for susceptible genotypes.
苯并咪唑(BZ)抗性在牲畜的线虫寄生虫中广泛存在,但对于寄生于禽类宿主的寄生虫的BZ抗性水平却知之甚少。我们调查了红松鸡(Lagopus lagopus scotica)的线虫寄生虫——纤细毛圆线虫(Trichostrongylus tenuis)的BZ抗性。BZ驱虫药在该系统中已使用长达15年,但现有的抗性表型证据尚无定论。我们在主要的β-微管蛋白位点(同型1,第200位残基)对来自14个种群的1530个个体进行了BZ抗性筛查,并在另外两个抗性位点(同型1,第167位残基;同型2,第200位残基)对其中940个个体进行了筛查。未发现BZ抗性基因型。该系统中的BZ抗性可能由其他机制引起,或者治疗方法和时间可能通过为敏感基因型创造大量避难所而降低了BZ抗性的选择压力。