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Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)

The ability to identify drivers responsible for algal community shifts is an important aspect of environmental issues. The lack of long-term datasets, covering periods prior to these shifts, is often limiting our understanding of drivers responsible. The freshwater alga, Gonyostomum semen (Raphidoph...

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Autores principales: Hagman, Camilla Hedlund Corneliussen, Rohrlack, Thomas, Uhlig, Silvio, Hostyeva, Vladyslava
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6919615/
https://www.ncbi.nlm.nih.gov/pubmed/31851717
http://dx.doi.org/10.1371/journal.pone.0226650
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author Hagman, Camilla Hedlund Corneliussen
Rohrlack, Thomas
Uhlig, Silvio
Hostyeva, Vladyslava
author_facet Hagman, Camilla Hedlund Corneliussen
Rohrlack, Thomas
Uhlig, Silvio
Hostyeva, Vladyslava
author_sort Hagman, Camilla Hedlund Corneliussen
collection PubMed
description The ability to identify drivers responsible for algal community shifts is an important aspect of environmental issues. The lack of long-term datasets, covering periods prior to these shifts, is often limiting our understanding of drivers responsible. The freshwater alga, Gonyostomum semen (Raphidophyceae), has significantly increased distribution and mass occurrences in Scandinavian lakes during the past few decades, often releasing a skin irritating slime that causes discomfort for swimmers. While the alga has been extensively studied, long-term data from individual lakes are often absent or greatly limited and drivers behind this species’ success are still not clear. However, if specific and persistent taxa biomarkers for G. semen could be detected in dated sediment cores, long-term data would be improved and more useful. To test for biomarkers, we examined the pigment composition of several G. semen strains in culture. Further, dated sediment core samples from Lake Lundebyvann, Norway, were used to test the pigments’ suitability as biomarkers in paleolimnological studies. Modifications to a common analysis allowed for the successful detection of the polar xanthophyll heteroxanthin and the non-polar chlorophyll a, as well as several other algal pigments by using high performance liquid chromatography-photometric diode arrays (HPLC-PDA). Heteroxanthin was confirmed by liquid chromatography-mass spectrometry (LC-MS) and detected by HPLC-PDA in all examined G. semen strains, along with chlorophyll a. Using HPLC-PDA, we also identified and confirmed the presence of the biomarker, xanthophyll heteroxanthin, in sediment core samples up to 60 years of age. The specificity of this xanthophyll was also tested by examining a wide range of algal strains from common Norwegian phytoplankton species. Heteroxanthin was not detected in any species commonly occurring in significant amounts in Norwegian lakes. We therefore conclude that heteroxanthin is a suitable pigment biomarker for G. semen and that this pigment can be successfully used for paleolimnological studies.
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spelling pubmed-69196152020-01-07 Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae) Hagman, Camilla Hedlund Corneliussen Rohrlack, Thomas Uhlig, Silvio Hostyeva, Vladyslava PLoS One Research Article The ability to identify drivers responsible for algal community shifts is an important aspect of environmental issues. The lack of long-term datasets, covering periods prior to these shifts, is often limiting our understanding of drivers responsible. The freshwater alga, Gonyostomum semen (Raphidophyceae), has significantly increased distribution and mass occurrences in Scandinavian lakes during the past few decades, often releasing a skin irritating slime that causes discomfort for swimmers. While the alga has been extensively studied, long-term data from individual lakes are often absent or greatly limited and drivers behind this species’ success are still not clear. However, if specific and persistent taxa biomarkers for G. semen could be detected in dated sediment cores, long-term data would be improved and more useful. To test for biomarkers, we examined the pigment composition of several G. semen strains in culture. Further, dated sediment core samples from Lake Lundebyvann, Norway, were used to test the pigments’ suitability as biomarkers in paleolimnological studies. Modifications to a common analysis allowed for the successful detection of the polar xanthophyll heteroxanthin and the non-polar chlorophyll a, as well as several other algal pigments by using high performance liquid chromatography-photometric diode arrays (HPLC-PDA). Heteroxanthin was confirmed by liquid chromatography-mass spectrometry (LC-MS) and detected by HPLC-PDA in all examined G. semen strains, along with chlorophyll a. Using HPLC-PDA, we also identified and confirmed the presence of the biomarker, xanthophyll heteroxanthin, in sediment core samples up to 60 years of age. The specificity of this xanthophyll was also tested by examining a wide range of algal strains from common Norwegian phytoplankton species. Heteroxanthin was not detected in any species commonly occurring in significant amounts in Norwegian lakes. We therefore conclude that heteroxanthin is a suitable pigment biomarker for G. semen and that this pigment can be successfully used for paleolimnological studies. Public Library of Science 2019-12-18 /pmc/articles/PMC6919615/ /pubmed/31851717 http://dx.doi.org/10.1371/journal.pone.0226650 Text en © 2019 Hagman 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
Hagman, Camilla Hedlund Corneliussen
Rohrlack, Thomas
Uhlig, Silvio
Hostyeva, Vladyslava
Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title_full Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title_fullStr Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title_full_unstemmed Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title_short Heteroxanthin as a pigment biomarker for Gonyostomum semen (Raphidophyceae)
title_sort heteroxanthin as a pigment biomarker for gonyostomum semen (raphidophyceae)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6919615/
https://www.ncbi.nlm.nih.gov/pubmed/31851717
http://dx.doi.org/10.1371/journal.pone.0226650
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