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利用聚合酶链反应DNA扩增技术快速检测感染猪生物样本中的伪狂犬病病毒基因组序列。

Rapid detection of pseudorabies virus genomic sequences in biological samples from infected pigs using polymerase chain reaction DNA amplification.

作者信息

Jestin A, Foulon T, Pertuiset B, Blanchard P, Labourdet M

机构信息

Ministère de l'Agriculture, CNEVA, Ploufragan, France.

出版信息

Vet Microbiol. 1990 Jun;23(1-4):317-28. doi: 10.1016/0378-1135(90)90162-o.

Abstract

The presence of the pseudorabies virus (PRV) genome in infected hosts has previously been studied by standard hybridization techniques, which showed the viral genome to be present at very low levels in infected tissues. The recently introduced polymerase chain reaction (PCR) procedure provides an alternative and rapid means of amplifying small quantities of specific DNA sequences. We applied this technique to a study of pigs infected by PRV. The sequence selected for amplification consisted of 222 base pairs lying in the gene coding for the glycoprotein gp50. We used a pair of 20-mer oligonucleotides flanking this sequence as primer and a cloned Stu-Nde fragment containing the sequence as target DNA. To avoid the tedious DNA extraction procedure we performed PCR directly on disrupted cells and detected specific amplification after 25 cycles of PCR with the thermostable Taq DNA polymerase. Amplified products were detected by gel electrophoresis directly. Nasal samples from experimentally and naturally infected pigs were tested by this PCR technique. When compared with tissue culture and serological tests, detection by gel electrophoresis of PCR amplified fragments provided excellent specificity and sensitivity. We concluded that PCR amplification will be a valuable tool for rapid diagnosis of PRV infection in pigs, taking less than 1 h to complete.

摘要

此前曾通过标准杂交技术研究感染宿主中伪狂犬病病毒(PRV)基因组的存在情况,结果表明病毒基因组在感染组织中的含量非常低。最近引入的聚合酶链反应(PCR)程序提供了一种扩增少量特定DNA序列的替代且快速的方法。我们将此技术应用于对感染PRV的猪的研究。选择用于扩增的序列由位于编码糖蛋白gp50的基因中的222个碱基对组成。我们使用一对位于该序列两侧的20聚体寡核苷酸作为引物,并使用包含该序列的克隆Stu - Nde片段作为靶DNA。为避免繁琐的DNA提取程序,我们直接对破碎的细胞进行PCR,并在使用耐热Taq DNA聚合酶进行25个循环的PCR后检测到特异性扩增。扩增产物通过凝胶电泳直接检测。通过这种PCR技术对实验感染和自然感染猪的鼻拭子样本进行了检测。与组织培养和血清学检测相比,通过凝胶电泳检测PCR扩增片段具有出色的特异性和灵敏度。我们得出结论,PCR扩增将成为猪PRV感染快速诊断的有价值工具,整个过程耗时不到1小时即可完成。

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