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利用 MinION 纳米孔测序技术快速进行猪繁殖与呼吸综合征病毒(PRRSV)基因分型。

Rapid genotyping of porcine reproductive and respiratory syndrome virus (PRRSV) using MinION nanopore sequencing.

机构信息

Department of Population Medicine and Diagnostic Sciences, Animal Health Diagnostic Center, College of Veterinary Medicine, Cornell University, Ithaca, NY, United States of America.

Department of Veterinary Diagnostic and Production Animal Medicine, College of Veterinary Medicine, Iowa State University, Ames, Iowa, United States of America.

出版信息

PLoS One. 2023 May 23;18(5):e0282767. doi: 10.1371/journal.pone.0282767. eCollection 2023.

Abstract

The global distribution and constant evolution are challenges for the control of porcine reproductive and respiratory syndrome virus (PRRSV), one of the most important viruses affecting swine worldwide. Effective control of PRRSV benefits from genotyping, which currently relies on Sanger sequencing. Here we developed and optimized procedures for real-time genotyping and whole genome sequencing of PRRSV directly from clinical samples based on targeted amplicon- and long amplicon tiling sequencing using the MinION Oxford Nanopore platform. Procedures were developed and tested on 154 clinical samples (including lung, serum, oral fluid and processing fluid) with RT-PCR Ct values ranging from 15 to 35. The targeted amplicon sequencing (TAS) approach was developed to obtain sequences of the complete ORF5 (main target gene for PRRSV genotyping) and partial ORF4 and ORF6 sequences of both PRRSV-1 and PRRSV-2 species. After only 5 min of sequencing, PRRSV consensus sequences with identities to reference sequences above 99% were obtained, enabling rapid identification and genotyping of clinical PRRSV samples into lineages 1, 5 and 8. The long amplicon tiling sequencing (LATS) approach targets type 2 PRRSV, the most prevalent viral species in the U.S. and China. Complete PRRSV genomes were obtained within the first hour of sequencing for samples with Ct values below 24.9. Ninety-two whole genome sequences were obtained using the LATS procedure. Fifty out of 60 sera (83.3%) and 18 out of 20 lung samples (90%) had at least 80% of genome covered at a minimum of 20X sequence depth per position. The procedures developed and optimized in this study here are valuable tools with potential for field application during PRRSV elimination programs.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)是全球范围内影响猪的最重要病毒之一,其全球分布和不断演变给其防控带来了挑战。对 PRRSV 进行基因分型有助于其防控,目前基因分型主要依赖于 Sanger 测序。在此,我们基于靶向扩增子和长扩增子平铺测序,利用 MinION Oxford Nanopore 平台,开发并优化了直接从临床样本中对 PRRSV 进行实时基因分型和全基因组测序的程序。该程序在 154 个临床样本(包括肺、血清、口腔液和加工液)上进行了开发和测试,这些样本的 RT-PCR Ct 值范围为 15 至 35。靶向扩增子测序(TAS)方法用于获得完整 ORF5(PRRSV 基因分型的主要靶基因)和 PRRSV-1 和 PRRSV-2 种部分 ORF4 和 ORF6 序列的序列。在测序仅 5 分钟后,即可获得与参考序列相似度高于 99%的 PRRSV 共识序列,从而能够快速识别和对临床 PRRSV 样本进行基因分型,分为 1、5 和 8 谱系。长扩增子平铺测序(LATS)方法针对美国和中国最流行的病毒物种 2 型 PRRSV。对于 Ct 值低于 24.9 的样本,在测序的第一个小时内即可获得完整的 PRRSV 基因组。使用 LATS 程序共获得了 92 个全基因组序列。在 60 份血清中有 50 份(83.3%),在 20 份肺组织样本中有 18 份(90%)在每个位置的最低 20X 测序深度下至少有 80%的基因组被覆盖。本研究中开发和优化的程序是具有现场应用潜力的宝贵工具,可用于 PRRSV 消除计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99c3/10205005/3ae56407a83e/pone.0282767.g001.jpg

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