BK21 Graduate Program, Department of Biomedical Sciences, Korea University College of Medicine, Seoul 02841, Korea.
Department of Microbiology, Korea University College of Medicine, Seoul 02841, Korea.
Viruses. 2021 May 6;13(5):847. doi: 10.3390/v13050847.
Whole-genome sequencing of infectious agents enables the identification and characterization of emerging viruses. The MinION device is a portable sequencer that allows real-time sequencing in fields or hospitals. (Hantaan virus, HTNV), harbored by , causes hemorrhagic fever with renal syndrome (HFRS) and poses a critical public health threat worldwide. In this study, we aimed to evaluate the feasibility of using nanopore sequencing for whole-genome sequencing of HTNV from samples having different viral copy numbers. Amplicon-based next-generation sequencing was performed in lung tissues collected from the Republic of Korea. Genomic sequences of HTNV were analyzed based on the viral RNA copy numbers. Amplicon-based nanopore sequencing provided nearly full-length genomic sequences of HTNV and showed sufficient read depth for phylogenetic analysis after 8 h of sequencing. The average identity of the HTNV genome sequences for the nanopore sequencer compared to those of generated from Illumina MiSeq revealed 99.8% (L and M segments) and 99.7% (S segment) identities, respectively. This study highlights the potential of the portable nanopore sequencer for rapid generation of accurate genomic sequences of HTNV for quicker decision making in point-of-care testing of HFRS patients during a hantavirus outbreak.
对病原体进行全基因组测序可以识别和描述新出现的病毒。MinION 设备是一种便携式测序仪,可在现场或医院进行实时测序。汉坦病毒(HTNV)由携带,引起肾综合征出血热(HFRS),并在全球范围内构成重大公共卫生威胁。在这项研究中,我们旨在评估使用纳米孔测序技术对具有不同病毒拷贝数的 HTNV 样本进行全基因组测序的可行性。对从韩国共和国采集的肺组织进行基于扩增子的下一代测序。根据病毒 RNA 拷贝数分析 HTNV 的基因组序列。基于扩增子的纳米孔测序提供了 HTNV 的近乎全长基因组序列,并且在测序 8 小时后具有足够的读取深度进行系统发育分析。与 Illumina MiSeq 生成的 HTNV 基因组序列相比,纳米孔测序仪的 HTNV 基因组序列的平均同一性分别为 99.8%(L 和 M 片段)和 99.7%(S 片段)。这项研究强调了便携式纳米孔测序仪在汉坦病毒爆发期间快速生成 HFRS 患者即时护理检测中 HTNV 准确基因组序列的潜力,以便更快地做出决策。