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用于病毒和类病毒诊断的入境后检疫与高通量测序方法的并列比较

Side-by-Side Comparison of Post-Entry Quarantine and High Throughput Sequencing Methods for Virus and Viroid Diagnosis.

作者信息

Gauthier Marie-Emilie A, Lelwala Ruvini V, Elliott Candace E, Windell Craig, Fiorito Sonia, Dinsdale Adrian, Whattam Mark, Pattemore Julie, Barrero Roberto A

机构信息

eResearch, Research Infrastructure, Academic Division, Queensland University of Technology, Brisbane, QLD 4001, Australia.

Science and Surveillance Group, Post Entry Quarantine, Department of Agriculture, Water and the Environment, Mickleham, VIC 3064, Australia.

出版信息

Biology (Basel). 2022 Feb 8;11(2):263. doi: 10.3390/biology11020263.

Abstract

Rapid and safe access to new plant genetic stocks is crucial for primary plant industries to remain profitable, sustainable, and internationally competitive. Imported plant species may spend several years in Post Entry Quarantine (PEQ) facilities, undergoing pathogen testing which can impact the ability of plant industries to quickly adapt to new global market opportunities by accessing new varieties. Advances in high throughput sequencing (HTS) technologies provide new opportunities for a broad range of fields, including phytosanitary diagnostics. In this study, we compare the performance of two HTS methods (RNA-Seq and sRNA-Seq) with that of existing PEQ molecular assays in detecting and identifying viruses and viroids from various plant commodities. To analyze the data, we tested several bioinformatics tools which rely on different approaches, including direct-read, de novo, and reference-guided assembly. We implemented VirusReport, a new portable, scalable, and reproducible nextflow pipeline that analyses sRNA datasets to detect and identify viruses and viroids. We raise awareness of the need to evaluate cross-sample contamination when analyzing HTS data routinely and of using methods to mitigate index cross-talk. Overall, our results suggest that sRNA analyzed using VirReport provides opportunities to improve quarantine testing at PEQ by detecting all regulated exotic viruses from imported plants in a single assay.

摘要

快速且安全地获取新的植物遗传资源对于初级植物产业保持盈利、可持续发展及国际竞争力至关重要。进口植物品种可能需要在入境后检疫(PEQ)设施中存放数年,接受病原体检测,这可能会影响植物产业通过获取新品种快速适应新的全球市场机遇的能力。高通量测序(HTS)技术的进步为包括植物检疫诊断在内的广泛领域提供了新机遇。在本研究中,我们将两种HTS方法(RNA测序和小RNA测序)与现有的PEQ分子检测方法在检测和鉴定来自各种植物商品的病毒和类病毒方面的性能进行了比较。为了分析数据,我们测试了几种依赖不同方法的生物信息学工具,包括直接读取、从头组装和参考引导组装。我们实施了VirusReport,这是一种新的便携式、可扩展且可重复的Nextflow流程,用于分析小RNA数据集以检测和鉴定病毒和类病毒。我们提高了人们对在常规分析HTS数据时评估交叉样本污染以及使用方法减轻索引串扰的必要性的认识。总体而言,我们的结果表明,使用VirReport分析的小RNA通过在单一检测中检测来自进口植物的所有受监管外来病毒,为改善PEQ的检疫检测提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca00/8868628/d8eaba998592/biology-11-00263-g001.jpg

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