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用于检测、鉴定和分型病毒性出血性败血症病毒(VHSV)的宏阵列的设计与评估

Design and Evaluation of a Macroarray for Detection, Identification, and Typing of Viral Hemorrhagic Septicemia Virus (VHSV).

作者信息

López-Vázquez Carmen, Bandín Isabel, Dopazo Carlos P

机构信息

Unidad de Ictiopatología, Instituto de Acuicultura y Departamento de Microbiología, Universidad de Santiago de Compostela, 15782 Santiago de Compostela, Spain.

出版信息

Animals (Basel). 2021 Mar 16;11(3):841. doi: 10.3390/ani11030841.

Abstract

The viral hemorrhagic septicemia virus (VHSV) is the causative agent of an important disease in freshwater and marine fishes. Its diagnosis officially relies on the isolation of the virus in cell culture and its identification by serological or polymerase chain reaction (PCR) methodologies. Nowadays, reverse transcription real-time quantitative PCR (RT-qPCR) is the most widely employed technique for the detection of this virus and some studies have reported the validation of RT-qPCR procedures for the detection, typing, and quantification of VHSV isolates. However, although the efficacy of this technique is not in doubt, it can be cumbersome and even impractical when it comes to processing large numbers of samples, a situation in which cross-contamination problems cannot be ruled out. In the present study, we have designed and validated a macroarray for the simultaneous detection, typing, and quantification of VHSV strains. Its analytical sensitivity (5-50 TCID/), analytical specificity (intra and intergroup), efficiency (E = 100.0-101.1) and reliability (repeatability and reproducibility with CV < 5%, and standard curves with R < 0.95) with strains from any VHSV genotype have been widely demonstrated. The procedure is based on the 'binary multiplex RT-qPCR system (bmRT-qPCR)' previously reported by the same team, applied to arrays of 96-well PCR strip tubes plates, which can be stored at -25 °C for three months and up to one year before their use, without significant loss of efficiency.

摘要

病毒性出血性败血症病毒(VHSV)是淡水和海水鱼类中一种重要疾病的病原体。其诊断正式依赖于在细胞培养中分离病毒,并通过血清学或聚合酶链反应(PCR)方法进行鉴定。如今,逆转录实时定量PCR(RT-qPCR)是检测该病毒最广泛使用的技术,一些研究报告了RT-qPCR程序在检测、分型和定量VHSV分离株方面的验证。然而,尽管这项技术的有效性毋庸置疑,但在处理大量样本时可能会很麻烦甚至不切实际,在这种情况下无法排除交叉污染问题。在本研究中,我们设计并验证了一种用于同时检测、分型和定量VHSV毒株的宏阵列。其对任何VHSV基因型毒株的分析灵敏度(5-50 TCID/)、分析特异性(组内和组间)、效率(E = 100.0-101.1)和可靠性(变异系数<5%的重复性和再现性,以及相关系数R<0.95的标准曲线)已得到广泛证明。该程序基于同一团队先前报道的“二元多重RT-qPCR系统(bmRT-qPCR)”,应用于96孔PCR条管板阵列,可在-25°C下保存三个月,使用前保存长达一年,而不会有明显的效率损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63c1/8002285/d02d40f472cd/animals-11-00841-g001a.jpg

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