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高分辨率熔解曲线分析快速检测严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)变异株。

High resolution melting curve analysis for rapid detection of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants.

出版信息

Acta Virol. 2023;67(1):91-98. doi: 10.4149/av_2023_109.

DOI:10.4149/av_2023_109
PMID:36950889
Abstract

Since the emergence of the original Wuhan SARS-CoV-2 strain, several new variants of the virus have emerged. Alpha, Beta, Gamma, Delta and the most recent Omicron variants have been introduced during this pandemic. Several methods including, but not restricted to, allele-specific PCR, ligation with rolling circle amplification and real-time PCR with allele-specific probes are able to detect mutations as low as a single nucleotide polymorphism. High-resolution melting curve analysis is ano-ther technique to assess any mutations in a nucleic acid chain. Confirmed samples with SARS-CoV-2 infection were subjected to variant identification using a de novo-designed HRM assay. In order to select for mutations with the highest effect on Tm of the amplicon, deletion mutations of NSP6 (Del 3675-3677), and S1 (Del 144) were chosen for HRM analysis. HRM analysis for the amplicon of the primer set-1 (NSP6) resulted in Tm differences of -0.39°C, +0.4°C, and -0.6°C between Alpha, Delta, and Omicron variants, respectively, in comparison to the original Wuhan strain. Moreover, HRM analysis of the amplification performed by primer set-2 (S1) led to Tm differences of +0.32°C, -0.26°C, and +0.24°C between Alpha, Delta, and Omicron variants, respectively, in comparison to original Wuhan strain. The test was able to specify each sample to its variant group with more than 90 percent of confidence. The results obtained in this study demonstrate that using a single closed-tube strategy with a HRM-equipped machine, screening new variants of the virus is possible in a fast and reliable way. Keywords: high resolution melting; SARS coronavirus 2; mutation; variant; genotyping.

摘要

自最初的武汉 SARS-CoV-2 毒株出现以来,已经出现了几种新的病毒变体。在这次大流行期间,已经引入了 Alpha、Beta、Gamma、Delta 和最近的 Omicron 变体。几种方法,包括但不限于等位基因特异性 PCR、滚环扩增的连接和带有等位基因特异性探针的实时 PCR,能够检测到低至单个核苷酸多态性的突变。高分辨率熔解曲线分析是另一种评估核酸链中任何突变的技术。对经确认的 SARS-CoV-2 感染样本使用从头设计的 HRM 测定法进行变体鉴定。为了选择对扩增物 Tm 影响最大的突变,选择 NSP6(Del 3675-3677)和 S1(Del 144)的缺失突变进行 HRM 分析。引物组-1(NSP6)的扩增物的 HRM 分析导致与原始武汉株相比,Alpha、Delta 和 Omicron 变体的 Tm 差异分别为-0.39°C、+0.4°C 和-0.6°C。此外,引物组-2(S1)的扩增的 HRM 分析导致与原始武汉株相比,Alpha、Delta 和 Omicron 变体的 Tm 差异分别为+0.32°C、-0.26°C 和+0.24°C。该测试能够以超过 90%的置信度将每个样本指定到其变体组。本研究的结果表明,使用带有 HRM 设备的单个封闭管策略,可以快速可靠地筛选病毒的新变体。关键词:高分辨率熔解;SARS 冠状病毒 2;突变;变体;基因分型。

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