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Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta

Phytophthora is arguably one of the most damaging genera of plant pathogens. This pathogen is well suited to transmission via the international plant trade, and globalization has been promoting its spread since the 19th century. Early detection is essential for reducing its economic and ecological i...

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Autores principales: Berka, Miroslav, Greplová, Marie, Saiz-Fernández, Iñigo, Novák, Jan, Luklová, Markéta, Zelená, Pavla, Tomšovský, Michal, Brzobohatý, Břetislav, Černý, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763169/
https://www.ncbi.nlm.nih.gov/pubmed/33322721
http://dx.doi.org/10.3390/ijms21249463
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author Berka, Miroslav
Greplová, Marie
Saiz-Fernández, Iñigo
Novák, Jan
Luklová, Markéta
Zelená, Pavla
Tomšovský, Michal
Brzobohatý, Břetislav
Černý, Martin
author_facet Berka, Miroslav
Greplová, Marie
Saiz-Fernández, Iñigo
Novák, Jan
Luklová, Markéta
Zelená, Pavla
Tomšovský, Michal
Brzobohatý, Břetislav
Černý, Martin
author_sort Berka, Miroslav
collection PubMed
description Phytophthora is arguably one of the most damaging genera of plant pathogens. This pathogen is well suited to transmission via the international plant trade, and globalization has been promoting its spread since the 19th century. Early detection is essential for reducing its economic and ecological impact. Here, a shotgun proteomics approach was utilized for Phytophthora analysis. The collection of 37 Phytophthora isolates representing 12 different species was screened for species-specific peptide patterns. Next, Phytophthora proteins were detected in planta, employing model plants Solanum tuberosum and Hordeum vulgare. Although the evolutionarily conserved sequences represented more than 10% of the host proteome and limited the pathogen detection, the comparison between qPCR and protein data highlighted more than 300 protein markers, which correlated positively with the amount of P. infestans DNA. Finally, the analysis of P. palmivora response in barley revealed significant alterations in plant metabolism. These changes included enzymes of cell wall metabolism, ROS production, and proteins involved in trafficking. The observed root-specific attenuation in stress–response mechanisms, including the biosynthesis of jasmonates, ethylene and polyamines, and an accumulation of serotonin, provided the first insight into molecular mechanisms behind this particular biotic interaction.
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spelling pubmed-77631692020-12-27 Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta Berka, Miroslav Greplová, Marie Saiz-Fernández, Iñigo Novák, Jan Luklová, Markéta Zelená, Pavla Tomšovský, Michal Brzobohatý, Břetislav Černý, Martin Int J Mol Sci Article Phytophthora is arguably one of the most damaging genera of plant pathogens. This pathogen is well suited to transmission via the international plant trade, and globalization has been promoting its spread since the 19th century. Early detection is essential for reducing its economic and ecological impact. Here, a shotgun proteomics approach was utilized for Phytophthora analysis. The collection of 37 Phytophthora isolates representing 12 different species was screened for species-specific peptide patterns. Next, Phytophthora proteins were detected in planta, employing model plants Solanum tuberosum and Hordeum vulgare. Although the evolutionarily conserved sequences represented more than 10% of the host proteome and limited the pathogen detection, the comparison between qPCR and protein data highlighted more than 300 protein markers, which correlated positively with the amount of P. infestans DNA. Finally, the analysis of P. palmivora response in barley revealed significant alterations in plant metabolism. These changes included enzymes of cell wall metabolism, ROS production, and proteins involved in trafficking. The observed root-specific attenuation in stress–response mechanisms, including the biosynthesis of jasmonates, ethylene and polyamines, and an accumulation of serotonin, provided the first insight into molecular mechanisms behind this particular biotic interaction. MDPI 2020-12-12 /pmc/articles/PMC7763169/ /pubmed/33322721 http://dx.doi.org/10.3390/ijms21249463 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Berka, Miroslav
Greplová, Marie
Saiz-Fernández, Iñigo
Novák, Jan
Luklová, Markéta
Zelená, Pavla
Tomšovský, Michal
Brzobohatý, Břetislav
Černý, Martin
Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title_full Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title_fullStr Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title_full_unstemmed Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title_short Peptide-Based Identification of Phytophthora Isolates and Phytophthora Detection in Planta
title_sort peptide-based identification of phytophthora isolates and phytophthora detection in planta
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763169/
https://www.ncbi.nlm.nih.gov/pubmed/33322721
http://dx.doi.org/10.3390/ijms21249463
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