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Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach

Man-made shallow fishponds in the Czech Republic have been facing high eutrophication since the 1950s. Anthropogenic eutrophication and feeding of fish have strongly affected the physicochemical properties of water and its aquatic community composition, leading to harmful algal bloom formation. In o...

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Autores principales: Kust, Andreja, Řeháková, Klára, Vrba, Jaroslav, Maicher, Vincent, Mareš, Jan, Hrouzek, Pavel, Chiriac, Maria-Cecilia, Benedová, Zdeňka, Tesařová, Blanka, Saurav, Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7551678/
https://www.ncbi.nlm.nih.gov/pubmed/32878042
http://dx.doi.org/10.3390/toxins12090561
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author Kust, Andreja
Řeháková, Klára
Vrba, Jaroslav
Maicher, Vincent
Mareš, Jan
Hrouzek, Pavel
Chiriac, Maria-Cecilia
Benedová, Zdeňka
Tesařová, Blanka
Saurav, Kumar
author_facet Kust, Andreja
Řeháková, Klára
Vrba, Jaroslav
Maicher, Vincent
Mareš, Jan
Hrouzek, Pavel
Chiriac, Maria-Cecilia
Benedová, Zdeňka
Tesařová, Blanka
Saurav, Kumar
author_sort Kust, Andreja
collection PubMed
description Man-made shallow fishponds in the Czech Republic have been facing high eutrophication since the 1950s. Anthropogenic eutrophication and feeding of fish have strongly affected the physicochemical properties of water and its aquatic community composition, leading to harmful algal bloom formation. In our current study, we characterized the phytoplankton community across three eutrophic ponds to assess the phytoplankton dynamics during the vegetation season. We microscopically identified and quantified 29 cyanobacterial taxa comprising non-toxigenic and toxigenic species. Further, a detailed cyanopeptides (CNPs) profiling was performed using molecular networking analysis of liquid chromatography-tandem mass spectrometry (LC-MS/MS) data coupled with a dereplication strategy. This MS networking approach, coupled with dereplication, on the online global natural product social networking (GNPS) web platform led us to putatively identify forty CNPs: fourteen anabaenopeptins, ten microcystins, five cyanopeptolins, six microginins, two cyanobactins, a dipeptide radiosumin, a cyclooctapeptide planktocyclin, and epidolastatin 12. We applied the binary logistic regression to estimate the CNPs producers by correlating the GNPS data with the species abundance. The usage of the GNPS web platform proved a valuable approach for the rapid and simultaneous detection of a large number of peptides and rapid risk assessments for harmful blooms.
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spelling pubmed-75516782020-10-14 Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach Kust, Andreja Řeháková, Klára Vrba, Jaroslav Maicher, Vincent Mareš, Jan Hrouzek, Pavel Chiriac, Maria-Cecilia Benedová, Zdeňka Tesařová, Blanka Saurav, Kumar Toxins (Basel) Article Man-made shallow fishponds in the Czech Republic have been facing high eutrophication since the 1950s. Anthropogenic eutrophication and feeding of fish have strongly affected the physicochemical properties of water and its aquatic community composition, leading to harmful algal bloom formation. In our current study, we characterized the phytoplankton community across three eutrophic ponds to assess the phytoplankton dynamics during the vegetation season. We microscopically identified and quantified 29 cyanobacterial taxa comprising non-toxigenic and toxigenic species. Further, a detailed cyanopeptides (CNPs) profiling was performed using molecular networking analysis of liquid chromatography-tandem mass spectrometry (LC-MS/MS) data coupled with a dereplication strategy. This MS networking approach, coupled with dereplication, on the online global natural product social networking (GNPS) web platform led us to putatively identify forty CNPs: fourteen anabaenopeptins, ten microcystins, five cyanopeptolins, six microginins, two cyanobactins, a dipeptide radiosumin, a cyclooctapeptide planktocyclin, and epidolastatin 12. We applied the binary logistic regression to estimate the CNPs producers by correlating the GNPS data with the species abundance. The usage of the GNPS web platform proved a valuable approach for the rapid and simultaneous detection of a large number of peptides and rapid risk assessments for harmful blooms. MDPI 2020-08-31 /pmc/articles/PMC7551678/ /pubmed/32878042 http://dx.doi.org/10.3390/toxins12090561 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
Kust, Andreja
Řeháková, Klára
Vrba, Jaroslav
Maicher, Vincent
Mareš, Jan
Hrouzek, Pavel
Chiriac, Maria-Cecilia
Benedová, Zdeňka
Tesařová, Blanka
Saurav, Kumar
Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title_full Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title_fullStr Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title_full_unstemmed Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title_short Insight into Unprecedented Diversity of Cyanopeptides in Eutrophic Ponds Using an MS/MS Networking Approach
title_sort insight into unprecedented diversity of cyanopeptides in eutrophic ponds using an ms/ms networking approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7551678/
https://www.ncbi.nlm.nih.gov/pubmed/32878042
http://dx.doi.org/10.3390/toxins12090561
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