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Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols

Peach latent mosaic viroid (PLMVd) is an important pathogen that causes disease in peaches. Control of this viroid remains problematic because most PLMVd variants are symptomless, and although there are many detection tests in use, the reliability of PCR-based methods is compromised by the complex,...

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Autores principales: Luigi, Marta, Taglienti, Anna, Corrado, Carla Libia, Cardoni, Marco, Botti, Simona, Bissani, Rita, Casati, Paola, Passera, Alessandro, Miotti, Niccolò, De Jonghe, Kris, Everaert, Ellen, Olmos, Antonio, Ruiz-García, Ana B., Faggioli, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10181016/
https://www.ncbi.nlm.nih.gov/pubmed/37176860
http://dx.doi.org/10.3390/plants12091802
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author Luigi, Marta
Taglienti, Anna
Corrado, Carla Libia
Cardoni, Marco
Botti, Simona
Bissani, Rita
Casati, Paola
Passera, Alessandro
Miotti, Niccolò
De Jonghe, Kris
Everaert, Ellen
Olmos, Antonio
Ruiz-García, Ana B.
Faggioli, Francesco
author_facet Luigi, Marta
Taglienti, Anna
Corrado, Carla Libia
Cardoni, Marco
Botti, Simona
Bissani, Rita
Casati, Paola
Passera, Alessandro
Miotti, Niccolò
De Jonghe, Kris
Everaert, Ellen
Olmos, Antonio
Ruiz-García, Ana B.
Faggioli, Francesco
author_sort Luigi, Marta
collection PubMed
description Peach latent mosaic viroid (PLMVd) is an important pathogen that causes disease in peaches. Control of this viroid remains problematic because most PLMVd variants are symptomless, and although there are many detection tests in use, the reliability of PCR-based methods is compromised by the complex, branched secondary RNA structure of the viroid and its genetic diversity. In this study, a duplex RT-qPCR method was developed and validated against two previously published single RT-qPCRs, which were potentially able to detect all known PLMVd variants when used in tandem. In addition, in order to simplify the sample preparation, rapid-extraction protocols based on the use of crude sap or tissue printing were compared with commercially available RNA purification kits. The performance of the new procedure was evaluated in a test performance study involving five participant laboratories. The new method, in combination with rapid-sample-preparation approaches, was demonstrated to be feasible and reliable, with the advantage of detecting all different PLMVd isolates/variants assayed in a single reaction, reducing costs for routine diagnosis.
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spelling pubmed-101810162023-05-13 Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols Luigi, Marta Taglienti, Anna Corrado, Carla Libia Cardoni, Marco Botti, Simona Bissani, Rita Casati, Paola Passera, Alessandro Miotti, Niccolò De Jonghe, Kris Everaert, Ellen Olmos, Antonio Ruiz-García, Ana B. Faggioli, Francesco Plants (Basel) Article Peach latent mosaic viroid (PLMVd) is an important pathogen that causes disease in peaches. Control of this viroid remains problematic because most PLMVd variants are symptomless, and although there are many detection tests in use, the reliability of PCR-based methods is compromised by the complex, branched secondary RNA structure of the viroid and its genetic diversity. In this study, a duplex RT-qPCR method was developed and validated against two previously published single RT-qPCRs, which were potentially able to detect all known PLMVd variants when used in tandem. In addition, in order to simplify the sample preparation, rapid-extraction protocols based on the use of crude sap or tissue printing were compared with commercially available RNA purification kits. The performance of the new procedure was evaluated in a test performance study involving five participant laboratories. The new method, in combination with rapid-sample-preparation approaches, was demonstrated to be feasible and reliable, with the advantage of detecting all different PLMVd isolates/variants assayed in a single reaction, reducing costs for routine diagnosis. MDPI 2023-04-27 /pmc/articles/PMC10181016/ /pubmed/37176860 http://dx.doi.org/10.3390/plants12091802 Text en © 2023 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
Luigi, Marta
Taglienti, Anna
Corrado, Carla Libia
Cardoni, Marco
Botti, Simona
Bissani, Rita
Casati, Paola
Passera, Alessandro
Miotti, Niccolò
De Jonghe, Kris
Everaert, Ellen
Olmos, Antonio
Ruiz-García, Ana B.
Faggioli, Francesco
Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title_full Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title_fullStr Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title_full_unstemmed Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title_short Development and Validation of a Duplex RT-qPCR for Detection of Peach Latent Mosaic Viroid and Comparison of Different Nucleic-Acid-Extraction Protocols
title_sort development and validation of a duplex rt-qpcr for detection of peach latent mosaic viroid and comparison of different nucleic-acid-extraction protocols
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10181016/
https://www.ncbi.nlm.nih.gov/pubmed/37176860
http://dx.doi.org/10.3390/plants12091802
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