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开发并评估了一种无需连接、序列独立、单引物扩增(LF-SISPA)技术,用于病毒全基因组特征分析。

Development and evaluation of a ligation-free sequence-independent, single-primer amplification (LF-SISPA) assay for whole genome characterization of viruses.

机构信息

Division of Foodborne, Waterborne and Environmental Diseases, Centers for Disease Control and Prevention, Atlanta, GA, 30329, USA.

CDC Foundation, USA Contracted to Division of Viral Diseases, Centers for Disease Control and Prevention, Atlanta, GA, 30329, USA.

出版信息

J Virol Methods. 2022 Jan;299:114346. doi: 10.1016/j.jviromet.2021.114346. Epub 2021 Nov 2.

Abstract

Molecular identification and characterization of novel or re-emerging infectious pathogens is critical for disease surveillance and outbreak investigations. Next generation sequencing (NGS) using Sequence-Independent, Single-Primer Amplification (SISPA) is being used extensively in sequencing of viral genomes but it requires an expensive library preparation step. We developed a simple, low-cost method that enriches nucleic acids followed by a ligation-free (LF) 2-step Polymerase Chain Reaction (PCR) procedure for library preparation. A pan-chimeric universal primer (JS15N14) containing 15 nucleotides with a random tetradecamer (14N) attached to the 3'-end was designed. The complimentary primer (JS15) was used for nucleic acid enrichment in a first round PCR. A second PCR was designed to create Illumina sequencer-compatible sequencing-ready libraries for NGS. The new LF-SISPA protocol was tested using six RNA and DNA viral genomes (10.8-229.4 kilobases, kb) from an ATCC virome nucleic acid mix (ATCC® MSA-1008™) followed by analysis using One Codex, an online identification tool. In addition, a human stool sample known to be positive for norovirus GII was sequenced, and de novo assembly was performed using the Genome Detective Virus Tool allowing for near complete genome identification in less than 24 h. The LF-SISPA method does not require prior knowledge of target sequences and does not require an expensive enzymatic library preparation kit, thereby providing a simple, fast, low-cost alternative for the identification of unknown viral pathogens.

摘要

分子鉴定和新兴传染病原体的特征对于疾病监测和暴发调查至关重要。 下一代测序(NGS)使用无序列依赖性,单引物扩增(SISPA)广泛用于病毒基因组测序,但它需要昂贵的文库制备步骤。 我们开发了一种简单,低成本的方法,该方法可以富集核酸,然后进行无连接(LF)两步聚合酶链反应(PCR)文库制备。 设计了一种包含 15 个核苷酸的泛嵌合通用引物(JS15N14),在 3'末端附有一个随机十四聚体(14N)。 互补引物(JS15)用于第一轮 PCR 中的核酸富集。 设计第二轮 PCR 以创建适用于 NGS 的 Illumina 测序仪兼容测序就绪文库。 使用来自 ATCC 病毒组核酸混合物(ATCC®MSA-1008™)的六个 RNA 和 DNA 病毒基因组(10.8-229.4 千碱基对,kb)测试了新的 LF-SISPA 方案,然后使用在线鉴定工具 One Codex 进行分析。 此外,对已知含有诺如病毒 GII 的人类粪便样本进行了测序,并使用 Genome Detective Virus Tool 进行从头组装,不到 24 小时即可完成近完整基因组的鉴定。 LF-SISPA 方法不需要目标序列的先验知识,也不需要昂贵的酶文库制备试剂盒,从而为未知病毒病原体的鉴定提供了一种简单,快速,低成本的替代方法。

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