Traversa Donato, Iorio Raffaella, Klei Thomas R, Kharchenko Vitaliy A, Gawor Jakub, Otranto Domenico, Sparagano Olivier A E
Department of Comparative Biomedical Sciences, Faculty of Veterinary Medicine, Teramo, Italy.
J Clin Microbiol. 2007 Sep;45(9):2937-42. doi: 10.1128/JCM.00714-07. Epub 2007 Jul 11.
The ability of a reverse line blot (RLB) assay to identify 13 common species of equine small strongyles (cyathostomins) and to discriminate them from three Strongylus spp. (large strongyles) was demonstrated. The assay relied on the specific hybridization of PCR-amplified intergenic spacer DNA fragments of the nuclear ribosomal DNA to membrane-bound species-specific probes. All cyathostomins examined were unequivocally identified and simultaneously discriminated from each other and from three large strongyles (Strongylus edentatus, Strongylus equinus, and Strongylus vulgaris). This assay will enable the accurate and rapid identification of equine cyathostomins irrespective of their life cycle stage, opening important avenues for a better understanding of their biology and epidemiology and of the pathogenesis of cyathostomin-associated disease. In particular, this RLB method promises to be a powerful diagnostic tool to determine the roles of individual species in the pathogenesis of mixed infections and to elucidate some aspects of cyathostominosis. Also, it could represent a basic step toward the development of a rapid and simple molecular test for the early detection of drug-resistant genotypes of horse strongyle species.
已证实反向线印迹(RLB)分析能够鉴定马小圆形线虫(杯环属线虫)的13种常见种类,并将它们与三种圆线虫属(大型圆线虫)区分开来。该分析依赖于核糖体DNA的PCR扩增基因间隔区DNA片段与膜结合的物种特异性探针的特异性杂交。所有检测的杯环属线虫均被明确鉴定,同时彼此之间以及与三种大型圆线虫(无齿圆线虫、马圆线虫和普通圆线虫)区分开来。该分析将能够准确、快速地鉴定马杯环属线虫,而不论其生命周期阶段如何,为更好地了解其生物学、流行病学以及杯环属线虫相关疾病的发病机制开辟了重要途径。特别是,这种RLB方法有望成为一种强大的诊断工具,用于确定个体物种在混合感染发病机制中的作用,并阐明杯环属线虫病的某些方面。此外,它可能代表着朝着开发一种快速、简单的分子检测方法迈出的基本一步,用于早期检测马圆线虫物种的耐药基因型。