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Application of Duplex Fluorescence Melting Curve Analysis (FMCA) to Identify Canine Parvovirus Type 2 Variants

机译:双重荧光熔解曲线分析(FMCA)在识别犬细小病毒2型变异中的应用

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摘要

Canine parvovirus (CPV-2) is an enteric virus causing morbidity and mortality in dogs worldwide. Since CPV-2 emerged as canine pathogen, the original CPV-2 strain has constantly evolved, and its primary variants (CPV-2a, CPV-2b, and CPV-2c) co-circulate to varying extents in canine populations worldwide. Thus, rapid and accurate laboratory diagnoses of CPV-2 variants are crucial to monitor CPV-2 evolution. Conventional methods for CPV-2 genotyping are laborious, time consuming, and determining the genotype of a CPV-2 variant often requires two or more reaction tubes. The present study developed a probe-based fluorescence melting curve analysis (FMCA) for genotyping six different CPV-2 variants (original CPV-2, CPV-2a, CPV-2b, CPV-2c, and vaccine strains of CPVpf and CPVint) in a single reaction tube using only two TaqMan probes. One of the TaqMan probes (FAM labeled) was designed to perfectly match with the target sequence of CPV-2a, this probe allows a 1-bp mismatched hybridization with the CPV-2b VP2 gene region (A4062G), and a 2-bp mismatched hybridization for CPV-2c (A4062G and T4064A); Another TaqMan probe (HEX labeled) was produced to perfectly match with the target sequence of original CPV-2, this probe enables 1-bp mismatched hybridization with the other CPV-2 variants (A3045T). Using the two TaqMan probes, all six CPV-2 variants were readily distinguished by their respective melting temperature values in a single reaction tube. The detection limits of this assay were 1–10 copies per reaction for six CPV-2 construction plasmids and no cross reactions were observed with several other common canine viruses. In this assay, co-infected samples were also directly identified via probe-based FMCA without using a mixing control; only a pure control is required. The clinical evaluation of this assay was demonstrated by analyzing 83 clinical fecal samples, among which 41 (49.39%), 8 (9.63%), and 14 (16.87%) samples were found to be positive for CPV-2a, CPV-2b, and CPV-2c, respectively. The concordance rate between probe-based FMCA and Sanger sequencing was 100%. Thus, the duplex FMCA is effective, rapid, simple, high-throughput, and straightforward for genotyping CPV-2 variants, and is useful to effectively diagnose and monitor CPV-2 epidemiology.
机译:犬细小病毒(CPV-2)是一种肠病毒,可导致全球犬只发病和死亡。自从CPV-2成为犬病原体以来,原始的CPV-2菌株一直在进化,其主要变异体(CPV-2a,CPV-2b和CPV-2c)在全球范围内以不同程度共存。因此,对CPV-2变异体进行快速准确的实验室诊断对于监控CPV-2的进化至关重要。用于CPV-2基因分型的常规方法费力,费时,并且确定CPV-2变体的基因型通常需要两个或更多反应管。本研究开发了基于探针的荧光熔解曲线分析(FMCA),用于对6种不同的CPV-2变体(原始CPV-2,CPV-2a,CPV-2b,CPV-2c以及CPVpf和CPVint疫苗株)进行基因分型。一个仅使用两个TaqMan探针的反应管。 TaqMan探针之一(标记为FAM)被设计为与CPV-2a的靶序列完全匹配,该探针允许与CPV-2b VP2基因区域(A4062G)发生1 bp错配杂交,而发生2 bp错配与CPV-2c杂交(A4062G和T4064A);生产了另一个TaqMan探针(已标记HEX)以与原始CPV-2的靶序列完全匹配,该探针可与其他CPV-2变体(A3045T)进行1 bp错配杂交。使用两个TaqMan探针,可以在单个反应管中通过各自的解链温度值轻松区分所有六个CPV-2变体。该检测方法的检测限为六个CPV-2构建质粒每个反应1–10份,并且与其他几种常见犬病毒没有观察到交叉反应。在该测定中,还可以通过基于探针的FMCA直接鉴定出共同感染的样品,而无需使用混合对照。只需要一个纯控件。通过分析83份临床粪便样本证明了该测定方法的临床评价,其中41份(49.39%),8份(9.63%)和14份(16.87%)被发现对CPV-2a,CPV-2b呈阳性,和CPV-2c。基于探针的FMCA与Sanger测序的一致性率为100%。因此,双链FMCA对于CPV-2变种的基因分型是有效,快速,简单,高通量和直接的,并且对于有效诊断和监测CPV-2流行病学是有用的。

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