Javaran Vahid J, Poursalavati Abdonaser, Lemoyne Pierre, Ste-Croix Dave T, Moffett Peter, Fall Mamadou L
Saint-Jean-sur-Richelieu Research and Development Centre, Agriculture and Agri-Food Canada, Saint-Jean-sur-Richelieu, QC, Canada.
Centre SÈVE, Département de Biologie, Université de Sherbrooke, Sherbrooke, QC, Canada.
Front Microbiol. 2023 Jun 21;14:1192781. doi: 10.3389/fmicb.2023.1192781. eCollection 2023.
There is a global need for identifying viral pathogens, as well as for providing certified clean plant materials, in order to limit the spread of viral diseases. A key component of management programs for viral-like diseases is having a diagnostic tool that is quick, reliable, inexpensive, and easy to use. We have developed and validated a dsRNA-based nanopore sequencing protocol as a reliable method for detecting viruses and viroids in grapevines. We compared our method, which we term direct-cDNA sequencing from dsRNA (dsRNAcD), to direct RNA sequencing from rRNA-depleted total RNA (rdTotalRNA), and found that it provided more viral reads from infected samples. Indeed, dsRNAcD was able to detect all of the viruses and viroids detected using Illumina MiSeq sequencing (dsRNA-MiSeq). Furthermore, dsRNAcD sequencing was also able to detect low-abundance viruses that rdTotalRNA sequencing failed to detect. Additionally, rdTotalRNA sequencing resulted in a false-positive viroid identification due to the misannotation of a host-driven read. Two taxonomic classification workflows, DIAMOND & MEGAN (DIA & MEG) and Centrifuge & Recentrifuge (Cent & Rec), were also evaluated for quick and accurate read classification. Although the results from both workflows were similar, we identified pros and cons for both workflows. Our study shows that dsRNAcD sequencing and the proposed data analysis workflows are suitable for consistent detection of viruses and viroids, particularly in grapevines where mixed viral infections are common.
为了限制病毒性疾病的传播,全球都需要识别病毒病原体,并提供经过认证的清洁植物材料。类病毒疾病管理计划的一个关键组成部分是拥有一种快速、可靠、廉价且易于使用的诊断工具。我们已经开发并验证了一种基于双链RNA(dsRNA)的纳米孔测序方案,作为检测葡萄中病毒和类病毒的可靠方法。我们将我们的方法(我们称之为从dsRNA进行直接cDNA测序,即dsRNAcD)与从去除rRNA的总RNA进行直接RNA测序(rdTotalRNA)进行了比较,发现它能从受感染的样本中提供更多的病毒读数。事实上,dsRNAcD能够检测出使用Illumina MiSeq测序(dsRNA-MiSeq)检测到的所有病毒和类病毒。此外,dsRNAcD测序还能够检测到rdTotalRNA测序未能检测到的低丰度病毒。另外,由于对宿主驱动读数的错误注释,rdTotalRNA测序导致了类病毒的假阳性鉴定。还评估了两种分类学分类工作流程,即DIAMOND & MEGAN(DIA & MEG)和Centrifuge & Recentrifuge(Cent & Rec),以进行快速准确的读数分类。尽管两种工作流程的结果相似,但我们确定了两种工作流程的优缺点。我们的研究表明,dsRNAcD测序和所提出的数据分析工作流程适用于病毒和类病毒的一致性检测,特别是在混合病毒感染常见的葡萄中。