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Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants

High-throughput sequencing (HTS) of host plant small RNA (sRNA) is a popular approach for plant virus and viroid detection. The major bottlenecks for implementing this approach in routine virus screening of plants in quarantine include lack of computational resources and/or expertise in command-line...

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Autores principales: Lelwala, Ruvini V., LeBlanc, Zacharie, Gauthier, Marie-Emilie A., Elliott, Candace E., Constable, Fiona E., Murphy, Greg, Tyle, Callum, Dinsdale, Adrian, Whattam, Mark, Pattemore, Julie, Barrero, Roberto A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317486/
https://www.ncbi.nlm.nih.gov/pubmed/35891459
http://dx.doi.org/10.3390/v14071480
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author Lelwala, Ruvini V.
LeBlanc, Zacharie
Gauthier, Marie-Emilie A.
Elliott, Candace E.
Constable, Fiona E.
Murphy, Greg
Tyle, Callum
Dinsdale, Adrian
Whattam, Mark
Pattemore, Julie
Barrero, Roberto A.
author_facet Lelwala, Ruvini V.
LeBlanc, Zacharie
Gauthier, Marie-Emilie A.
Elliott, Candace E.
Constable, Fiona E.
Murphy, Greg
Tyle, Callum
Dinsdale, Adrian
Whattam, Mark
Pattemore, Julie
Barrero, Roberto A.
author_sort Lelwala, Ruvini V.
collection PubMed
description High-throughput sequencing (HTS) of host plant small RNA (sRNA) is a popular approach for plant virus and viroid detection. The major bottlenecks for implementing this approach in routine virus screening of plants in quarantine include lack of computational resources and/or expertise in command-line environments and limited availability of curated plant virus and viroid databases. We developed: (1) virus and viroid report web-based bioinformatics workflows on Galaxy Australia called GA-VirReport and GA-VirReport-Stats for detecting viruses and viroids from host plant sRNA extracts and (2) a curated higher plant virus and viroid database (PVirDB). We implemented sRNA sequencing with unique dual indexing on a set of plants with known viruses. Sequencing data were analyzed using GA-VirReport and PVirDB to validate these resources. We detected all known viruses in this pilot study with no cross-sample contamination. We then conducted a large-scale diagnosis of 105 imported plants processed at the post-entry quarantine facility (PEQ), Australia. We detected various pathogens in 14 imported plants and discovered that de novo assembly using 21–22 nt sRNA fraction and the megablast algorithm yielded better sensitivity and specificity. This study reports the successful, large-scale implementation of HTS and a user-friendly bioinformatics workflow for virus and viroid screening of imported plants at the PEQ.
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spelling pubmed-93174862022-07-27 Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants Lelwala, Ruvini V. LeBlanc, Zacharie Gauthier, Marie-Emilie A. Elliott, Candace E. Constable, Fiona E. Murphy, Greg Tyle, Callum Dinsdale, Adrian Whattam, Mark Pattemore, Julie Barrero, Roberto A. Viruses Article High-throughput sequencing (HTS) of host plant small RNA (sRNA) is a popular approach for plant virus and viroid detection. The major bottlenecks for implementing this approach in routine virus screening of plants in quarantine include lack of computational resources and/or expertise in command-line environments and limited availability of curated plant virus and viroid databases. We developed: (1) virus and viroid report web-based bioinformatics workflows on Galaxy Australia called GA-VirReport and GA-VirReport-Stats for detecting viruses and viroids from host plant sRNA extracts and (2) a curated higher plant virus and viroid database (PVirDB). We implemented sRNA sequencing with unique dual indexing on a set of plants with known viruses. Sequencing data were analyzed using GA-VirReport and PVirDB to validate these resources. We detected all known viruses in this pilot study with no cross-sample contamination. We then conducted a large-scale diagnosis of 105 imported plants processed at the post-entry quarantine facility (PEQ), Australia. We detected various pathogens in 14 imported plants and discovered that de novo assembly using 21–22 nt sRNA fraction and the megablast algorithm yielded better sensitivity and specificity. This study reports the successful, large-scale implementation of HTS and a user-friendly bioinformatics workflow for virus and viroid screening of imported plants at the PEQ. MDPI 2022-07-05 /pmc/articles/PMC9317486/ /pubmed/35891459 http://dx.doi.org/10.3390/v14071480 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lelwala, Ruvini V.
LeBlanc, Zacharie
Gauthier, Marie-Emilie A.
Elliott, Candace E.
Constable, Fiona E.
Murphy, Greg
Tyle, Callum
Dinsdale, Adrian
Whattam, Mark
Pattemore, Julie
Barrero, Roberto A.
Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title_full Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title_fullStr Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title_full_unstemmed Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title_short Implementation of GA-VirReport, a Web-Based Bioinformatics Toolkit for Post-Entry Quarantine Screening of Virus and Viroids in Plants
title_sort implementation of ga-virreport, a web-based bioinformatics toolkit for post-entry quarantine screening of virus and viroids in plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317486/
https://www.ncbi.nlm.nih.gov/pubmed/35891459
http://dx.doi.org/10.3390/v14071480
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