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运用TaqMan小沟结合物实时聚合酶链反应分析小型圆线虫(杯环属)β-微管蛋白密码子200多态性,结果表明,在对苯并咪唑耐药的群体中,TAC等位基因仅受到适度选择。

TaqMan minor groove binder real-time PCR analysis of beta-tubulin codon 200 polymorphism in small strongyles (Cyathostomin) indicates that the TAC allele is only moderately selected in benzimidazole-resistant populations.

作者信息

Von Samson-Himmelstjerna G, Buschbaum S, Wirtherle N, Pape M, Schnieder T

机构信息

Institute of Parasitology, Hannover School of Veterinary Medicine, Buenteweg 17, D-30559 Hannover, Germany.

出版信息

Parasitology. 2003 Nov;127(Pt 5):489-96. doi: 10.1017/s0031182003003974.

Abstract

TaqMan minor groove binder probes were evaluated as to their suitability for the real-time allelic discrimination of the beta-tubulin codon 200 TTC/TAC single nucleotide polymorphism in cyathostomin species. Amplification of titrated cloned full-length beta-tubulin cDNA revealed that the TaqMan minor groove binder PCR is capable of specifically detecting as few as 10 copies. Testing of DNA from single adult and larval stages of several different species of cyathostomin allowed reproducible genotyping of individual worms. Using the real-time PCR approach, the throughput of samples was considerably increased compared with conventional post-PCR readout procedure. Only 7.8% homozygous TAC L3 were found among 102 L3 which were genotyped from phenotypically BZ-resistant small strongyle populations. The percentages of the homozygous TTC and heterozygous TTC/TAC were 41.3% and 50.9%, respectively. This resulted in a total TAC-allele percentage of only 33.3%. These findings correspond to data obtained by genotyping of an experimentally selected BZ-resistant cyathostomin population. It is concluded that the beta-tubulin codon 200 polymorphism is not the sole mechanism involved in the process of BZ resistance in cyathostomins.

摘要

对TaqMan小沟结合剂探针进行了评估,以确定其是否适用于实时等位基因鉴别毛线虫属物种中β-微管蛋白密码子200的TTC/TAC单核苷酸多态性。对滴定的克隆全长β-微管蛋白cDNA进行扩增,结果显示TaqMan小沟结合剂PCR能够特异性检测低至10个拷贝。对几种不同毛线虫属物种的单个成虫和幼虫阶段的DNA进行检测,可对单个虫体进行可重复的基因分型。与传统的PCR后读数程序相比,使用实时PCR方法可显著提高样本通量。在从表型上对苯并咪唑(BZ)耐药的小型圆线虫种群进行基因分型的102个L3期幼虫中,仅发现7.8%为纯合TAC型。纯合TTC型和杂合TTC/TAC型的百分比分别为41.3%和50.9%。这导致TAC等位基因的总百分比仅为33.3%。这些发现与通过对实验选择的BZ耐药毛线虫种群进行基因分型获得的数据一致。得出的结论是,β-微管蛋白密码子200多态性不是毛线虫对BZ耐药过程中涉及的唯一机制。

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