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NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight

Grapevine (Vitis vinifera L.) is a crop of major economic importance. However, grapevine yield is guaranteed by the massive use of pesticides to counteract pathogen infections. Under temperate-humid climate conditions, downy mildew is a primary threat for viticulture. Downy mildew is caused by the b...

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Autores principales: Colombo, Monica, Masiero, Simona, Rosa, Stefano, Caporali, Elisabetta, Toffolatti, Silvia Laura, Mizzotti, Chiara, Tadini, Luca, Rossi, Fabio, Pellegrino, Sara, Musetti, Rita, Velasco, Riccardo, Perazzolli, Michele, Vezzulli, Silvia, Pesaresi, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567880/
https://www.ncbi.nlm.nih.gov/pubmed/33067553
http://dx.doi.org/10.1038/s41598-020-73027-x
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author Colombo, Monica
Masiero, Simona
Rosa, Stefano
Caporali, Elisabetta
Toffolatti, Silvia Laura
Mizzotti, Chiara
Tadini, Luca
Rossi, Fabio
Pellegrino, Sara
Musetti, Rita
Velasco, Riccardo
Perazzolli, Michele
Vezzulli, Silvia
Pesaresi, Paolo
author_facet Colombo, Monica
Masiero, Simona
Rosa, Stefano
Caporali, Elisabetta
Toffolatti, Silvia Laura
Mizzotti, Chiara
Tadini, Luca
Rossi, Fabio
Pellegrino, Sara
Musetti, Rita
Velasco, Riccardo
Perazzolli, Michele
Vezzulli, Silvia
Pesaresi, Paolo
author_sort Colombo, Monica
collection PubMed
description Grapevine (Vitis vinifera L.) is a crop of major economic importance. However, grapevine yield is guaranteed by the massive use of pesticides to counteract pathogen infections. Under temperate-humid climate conditions, downy mildew is a primary threat for viticulture. Downy mildew is caused by the biotrophic oomycete Plasmopara viticola Berl. & de Toni, which can attack grapevine green tissues. In lack of treatments and with favourable weather conditions, downy mildew can devastate up to 75% of grape cultivation in one season and weaken newly born shoots, causing serious economic losses. Nevertheless, the repeated and massive use of some fungicides can lead to environmental pollution, negative impact on non-targeted organisms, development of resistance, residual toxicity and can foster human health concerns. In this manuscript, we provide an innovative approach to obtain specific pathogen protection for plants. By using the yeast two-hybrid approach and the P. viticola cellulose synthase 2 (PvCesA2), as target enzyme, we screened a combinatorial 8 amino acid peptide library with the aim to identify interacting peptides, potentially able to inhibit PvCesa2. Here, we demonstrate that the NoPv1 peptide aptamer prevents P. viticola germ tube formation and grapevine leaf infection without affecting the growth of non-target organisms and without being toxic for human cells. Furthermore, NoPv1 is also able to counteract Phytophthora infestans growth, the causal agent of late blight in potato and tomato, possibly as a consequence of the high amino acid sequence similarity between P. viticola and P. infestans cellulose synthase enzymes.
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spelling pubmed-75678802020-10-19 NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight Colombo, Monica Masiero, Simona Rosa, Stefano Caporali, Elisabetta Toffolatti, Silvia Laura Mizzotti, Chiara Tadini, Luca Rossi, Fabio Pellegrino, Sara Musetti, Rita Velasco, Riccardo Perazzolli, Michele Vezzulli, Silvia Pesaresi, Paolo Sci Rep Article Grapevine (Vitis vinifera L.) is a crop of major economic importance. However, grapevine yield is guaranteed by the massive use of pesticides to counteract pathogen infections. Under temperate-humid climate conditions, downy mildew is a primary threat for viticulture. Downy mildew is caused by the biotrophic oomycete Plasmopara viticola Berl. & de Toni, which can attack grapevine green tissues. In lack of treatments and with favourable weather conditions, downy mildew can devastate up to 75% of grape cultivation in one season and weaken newly born shoots, causing serious economic losses. Nevertheless, the repeated and massive use of some fungicides can lead to environmental pollution, negative impact on non-targeted organisms, development of resistance, residual toxicity and can foster human health concerns. In this manuscript, we provide an innovative approach to obtain specific pathogen protection for plants. By using the yeast two-hybrid approach and the P. viticola cellulose synthase 2 (PvCesA2), as target enzyme, we screened a combinatorial 8 amino acid peptide library with the aim to identify interacting peptides, potentially able to inhibit PvCesa2. Here, we demonstrate that the NoPv1 peptide aptamer prevents P. viticola germ tube formation and grapevine leaf infection without affecting the growth of non-target organisms and without being toxic for human cells. Furthermore, NoPv1 is also able to counteract Phytophthora infestans growth, the causal agent of late blight in potato and tomato, possibly as a consequence of the high amino acid sequence similarity between P. viticola and P. infestans cellulose synthase enzymes. Nature Publishing Group UK 2020-10-16 /pmc/articles/PMC7567880/ /pubmed/33067553 http://dx.doi.org/10.1038/s41598-020-73027-x Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Colombo, Monica
Masiero, Simona
Rosa, Stefano
Caporali, Elisabetta
Toffolatti, Silvia Laura
Mizzotti, Chiara
Tadini, Luca
Rossi, Fabio
Pellegrino, Sara
Musetti, Rita
Velasco, Riccardo
Perazzolli, Michele
Vezzulli, Silvia
Pesaresi, Paolo
NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title_full NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title_fullStr NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title_full_unstemmed NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title_short NoPv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
title_sort nopv1: a synthetic antimicrobial peptide aptamer targeting the causal agents of grapevine downy mildew and potato late blight
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567880/
https://www.ncbi.nlm.nih.gov/pubmed/33067553
http://dx.doi.org/10.1038/s41598-020-73027-x
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