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Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)

The use of molecular tools to identify insect pests is a critical issue, especially when rapid and reliable tests are required. We proposed a protocol based on qPCR with SYBR Green technology to identify Philaenus italosignus (Hemiptera, Aphrophoridae). The species is one of the three spittlebugs ab...

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Autores principales: Rizzo, Domenico, Bracalini, Matteo, Campigli, Sara, Nencioni, Anita, Porcelli, Francesco, Marchi, Guido, Da Lio, Daniele, Bartolini, Linda, Rossi, Elisabetta, Sacchetti, Patrizia, Panzavolta, Tiziana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9741283/
https://www.ncbi.nlm.nih.gov/pubmed/36501353
http://dx.doi.org/10.3390/plants11233314
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author Rizzo, Domenico
Bracalini, Matteo
Campigli, Sara
Nencioni, Anita
Porcelli, Francesco
Marchi, Guido
Da Lio, Daniele
Bartolini, Linda
Rossi, Elisabetta
Sacchetti, Patrizia
Panzavolta, Tiziana
author_facet Rizzo, Domenico
Bracalini, Matteo
Campigli, Sara
Nencioni, Anita
Porcelli, Francesco
Marchi, Guido
Da Lio, Daniele
Bartolini, Linda
Rossi, Elisabetta
Sacchetti, Patrizia
Panzavolta, Tiziana
author_sort Rizzo, Domenico
collection PubMed
description The use of molecular tools to identify insect pests is a critical issue, especially when rapid and reliable tests are required. We proposed a protocol based on qPCR with SYBR Green technology to identify Philaenus italosignus (Hemiptera, Aphrophoridae). The species is one of the three spittlebugs able to transmit Xylella fastidiosa subsp. pauca ST53 in Italy, together with Philaenus spumarius and Neophilaenus campestris. Although less common than the other two species, its identification is key to verifying which role it can play when locally abundant. The proposed assay shows analytical specificity being inclusive with different populations of the target species and exclusive with non-target taxa, either taxonomically related or not. Moreover, it shows analytical sensibility, repeatability, and reproducibility, resulting in an excellent candidate for an official diagnostic method. The molecular test can discriminate P. italosignus from all non-target species, including the congeneric P. spumarius.
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spelling pubmed-97412832022-12-11 Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae) Rizzo, Domenico Bracalini, Matteo Campigli, Sara Nencioni, Anita Porcelli, Francesco Marchi, Guido Da Lio, Daniele Bartolini, Linda Rossi, Elisabetta Sacchetti, Patrizia Panzavolta, Tiziana Plants (Basel) Article The use of molecular tools to identify insect pests is a critical issue, especially when rapid and reliable tests are required. We proposed a protocol based on qPCR with SYBR Green technology to identify Philaenus italosignus (Hemiptera, Aphrophoridae). The species is one of the three spittlebugs able to transmit Xylella fastidiosa subsp. pauca ST53 in Italy, together with Philaenus spumarius and Neophilaenus campestris. Although less common than the other two species, its identification is key to verifying which role it can play when locally abundant. The proposed assay shows analytical specificity being inclusive with different populations of the target species and exclusive with non-target taxa, either taxonomically related or not. Moreover, it shows analytical sensibility, repeatability, and reproducibility, resulting in an excellent candidate for an official diagnostic method. The molecular test can discriminate P. italosignus from all non-target species, including the congeneric P. spumarius. MDPI 2022-11-30 /pmc/articles/PMC9741283/ /pubmed/36501353 http://dx.doi.org/10.3390/plants11233314 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
Rizzo, Domenico
Bracalini, Matteo
Campigli, Sara
Nencioni, Anita
Porcelli, Francesco
Marchi, Guido
Da Lio, Daniele
Bartolini, Linda
Rossi, Elisabetta
Sacchetti, Patrizia
Panzavolta, Tiziana
Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title_full Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title_fullStr Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title_full_unstemmed Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title_short Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
title_sort quantitative real-time pcr based on sybr green technology for the identification of philaenus italosignus drosopoulos & remane (hemiptera aphrophoridae)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9741283/
https://www.ncbi.nlm.nih.gov/pubmed/36501353
http://dx.doi.org/10.3390/plants11233314
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