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A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis

The cultivation of walnuts (Juglans sp.) in Europe retains high economic, social, and environmental value. The recent reporting of the Thousand Cankers Disease (TCD) fungus, Geosmithia morbida, and of its vector, Pityophthorus juglandis, in walnut trees in Italy is alarming the whole of Europe. Alth...

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Autores principales: Rizzo, Domenico, Da Lio, Daniele, Bartolini, Linda, Cappellini, Giovanni, Bruscoli, Tommaso, Bracalini, Matteo, Benigno, Alessandra, Salemi, Chiara, Del Nista, Dalia, Aronadio, Antonio, Panzavolta, Tiziana, Moricca, Salvatore
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7584228/
https://www.ncbi.nlm.nih.gov/pubmed/33095845
http://dx.doi.org/10.1371/journal.pone.0241109
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author Rizzo, Domenico
Da Lio, Daniele
Bartolini, Linda
Cappellini, Giovanni
Bruscoli, Tommaso
Bracalini, Matteo
Benigno, Alessandra
Salemi, Chiara
Del Nista, Dalia
Aronadio, Antonio
Panzavolta, Tiziana
Moricca, Salvatore
author_facet Rizzo, Domenico
Da Lio, Daniele
Bartolini, Linda
Cappellini, Giovanni
Bruscoli, Tommaso
Bracalini, Matteo
Benigno, Alessandra
Salemi, Chiara
Del Nista, Dalia
Aronadio, Antonio
Panzavolta, Tiziana
Moricca, Salvatore
author_sort Rizzo, Domenico
collection PubMed
description The cultivation of walnuts (Juglans sp.) in Europe retains high economic, social, and environmental value. The recent reporting of the Thousand Cankers Disease (TCD) fungus, Geosmithia morbida, and of its vector, Pityophthorus juglandis, in walnut trees in Italy is alarming the whole of Europe. Although Italy is at present the only foothold of the disease outside North America, given the difficulties inherent in traditional identification of both members of this beetle/fungus complex, a rapid and effective protocol for the early detection and identification of TCD organisms is an absolute priority for Europe. Here we report the development of an effective and sensitive molecular tool based on simplex/duplex qPCR assays for the rapid, accurate and highly specific detection of both the bionectriaceous fungal pathogen and its bark-beetle vector. Our assay performed excellently, detecting minute amounts of target DNA without any non-specific amplification. Detection limits from various and heterogeneous matrices were lower than other reported assays. Our molecular protocol could assist in TCD organism interception at entry points, territory monitoring for the early identification and eradication of outbreaks, delineation of quarantine areas, and tracing back TCD entry and dispersal pathways.
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spelling pubmed-75842282020-10-28 A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis Rizzo, Domenico Da Lio, Daniele Bartolini, Linda Cappellini, Giovanni Bruscoli, Tommaso Bracalini, Matteo Benigno, Alessandra Salemi, Chiara Del Nista, Dalia Aronadio, Antonio Panzavolta, Tiziana Moricca, Salvatore PLoS One Research Article The cultivation of walnuts (Juglans sp.) in Europe retains high economic, social, and environmental value. The recent reporting of the Thousand Cankers Disease (TCD) fungus, Geosmithia morbida, and of its vector, Pityophthorus juglandis, in walnut trees in Italy is alarming the whole of Europe. Although Italy is at present the only foothold of the disease outside North America, given the difficulties inherent in traditional identification of both members of this beetle/fungus complex, a rapid and effective protocol for the early detection and identification of TCD organisms is an absolute priority for Europe. Here we report the development of an effective and sensitive molecular tool based on simplex/duplex qPCR assays for the rapid, accurate and highly specific detection of both the bionectriaceous fungal pathogen and its bark-beetle vector. Our assay performed excellently, detecting minute amounts of target DNA without any non-specific amplification. Detection limits from various and heterogeneous matrices were lower than other reported assays. Our molecular protocol could assist in TCD organism interception at entry points, territory monitoring for the early identification and eradication of outbreaks, delineation of quarantine areas, and tracing back TCD entry and dispersal pathways. Public Library of Science 2020-10-23 /pmc/articles/PMC7584228/ /pubmed/33095845 http://dx.doi.org/10.1371/journal.pone.0241109 Text en © 2020 Rizzo et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rizzo, Domenico
Da Lio, Daniele
Bartolini, Linda
Cappellini, Giovanni
Bruscoli, Tommaso
Bracalini, Matteo
Benigno, Alessandra
Salemi, Chiara
Del Nista, Dalia
Aronadio, Antonio
Panzavolta, Tiziana
Moricca, Salvatore
A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title_full A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title_fullStr A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title_full_unstemmed A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title_short A duplex real-time PCR with probe for simultaneous detection of Geosmithia morbida and its vector Pityophthorus juglandis
title_sort duplex real-time pcr with probe for simultaneous detection of geosmithia morbida and its vector pityophthorus juglandis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7584228/
https://www.ncbi.nlm.nih.gov/pubmed/33095845
http://dx.doi.org/10.1371/journal.pone.0241109
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