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Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon

BACKGROUND: Picophytoplankton (i.e. cyanobacteria and pico-eukaryotes) are abundant and ecologically critical components of the autotrophic communities in the pelagic realm. These micro-organisms colonized a variety of extreme environments including high salinity waters. However, the distribution of...

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Autores principales: Schapira, Mathilde, Buscot, Marie-Jeanne, Pollet, Thomas, Leterme, Sophie C, Seuront, Laurent
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2847571/
https://www.ncbi.nlm.nih.gov/pubmed/20178652
http://dx.doi.org/10.1186/1746-1448-6-2
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author Schapira, Mathilde
Buscot, Marie-Jeanne
Pollet, Thomas
Leterme, Sophie C
Seuront, Laurent
author_facet Schapira, Mathilde
Buscot, Marie-Jeanne
Pollet, Thomas
Leterme, Sophie C
Seuront, Laurent
author_sort Schapira, Mathilde
collection PubMed
description BACKGROUND: Picophytoplankton (i.e. cyanobacteria and pico-eukaryotes) are abundant and ecologically critical components of the autotrophic communities in the pelagic realm. These micro-organisms colonized a variety of extreme environments including high salinity waters. However, the distribution of these organisms along strong salinity gradient has barely been investigated. The abundance and community structure of cyanobacteria and pico-eukaryotes were investigated along a natural continuous salinity gradient (1.8% to 15.5%) using flow cytometry. RESULTS: Highest picophytoplankton abundances were recorded under salinity conditions ranging between 8.0% and 11.0% (1.3 × 10(6 )to 1.4 × 10(6 )cells ml(-1)). Two populations of picocyanobacteria (likely Synechococcus and Prochlorococcus) and 5 distinct populations of pico-eukaryotes were identified along the salinity gradient. The picophytoplankton cytometric-richness decreased with salinity and the most cytometrically diversified community (4 to 7 populations) was observed in the brackish-marine part of the lagoon (i.e. salinity below 3.5%). One population of pico-eukaryote dominated the community throughout the salinity gradient and was responsible for the bloom observed between 8.0% and 11.0%. Finally only this halotolerant population and Prochlorococcus-like picocyanobacteria were identified in hypersaline waters (i.e. above 14.0%). Salinity was identified as the main factor structuring the distribution of picophytoplankton along the lagoon. However, nutritive conditions, viral lysis and microzooplankton grazing are also suggested as potentially important players in controlling the abundance and diversity of picophytoplankton along the lagoon. CONCLUSIONS: The complex patterns described here represent the first observation of picophytoplankton dynamics along a continuous gradient where salinity increases from 1.8% to 15.5%. This result provides new insight into the distribution of pico-autotrophic organisms along strong salinity gradients and allows for a better understanding of the overall pelagic functioning in saline systems which is critical for the management of these precious and climatically-stress ecosystems.
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spelling pubmed-28475712010-03-31 Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon Schapira, Mathilde Buscot, Marie-Jeanne Pollet, Thomas Leterme, Sophie C Seuront, Laurent Saline Syst Research BACKGROUND: Picophytoplankton (i.e. cyanobacteria and pico-eukaryotes) are abundant and ecologically critical components of the autotrophic communities in the pelagic realm. These micro-organisms colonized a variety of extreme environments including high salinity waters. However, the distribution of these organisms along strong salinity gradient has barely been investigated. The abundance and community structure of cyanobacteria and pico-eukaryotes were investigated along a natural continuous salinity gradient (1.8% to 15.5%) using flow cytometry. RESULTS: Highest picophytoplankton abundances were recorded under salinity conditions ranging between 8.0% and 11.0% (1.3 × 10(6 )to 1.4 × 10(6 )cells ml(-1)). Two populations of picocyanobacteria (likely Synechococcus and Prochlorococcus) and 5 distinct populations of pico-eukaryotes were identified along the salinity gradient. The picophytoplankton cytometric-richness decreased with salinity and the most cytometrically diversified community (4 to 7 populations) was observed in the brackish-marine part of the lagoon (i.e. salinity below 3.5%). One population of pico-eukaryote dominated the community throughout the salinity gradient and was responsible for the bloom observed between 8.0% and 11.0%. Finally only this halotolerant population and Prochlorococcus-like picocyanobacteria were identified in hypersaline waters (i.e. above 14.0%). Salinity was identified as the main factor structuring the distribution of picophytoplankton along the lagoon. However, nutritive conditions, viral lysis and microzooplankton grazing are also suggested as potentially important players in controlling the abundance and diversity of picophytoplankton along the lagoon. CONCLUSIONS: The complex patterns described here represent the first observation of picophytoplankton dynamics along a continuous gradient where salinity increases from 1.8% to 15.5%. This result provides new insight into the distribution of pico-autotrophic organisms along strong salinity gradients and allows for a better understanding of the overall pelagic functioning in saline systems which is critical for the management of these precious and climatically-stress ecosystems. BioMed Central 2010-02-24 /pmc/articles/PMC2847571/ /pubmed/20178652 http://dx.doi.org/10.1186/1746-1448-6-2 Text en Copyright © 2010 Schapira et al; licensee BioMed Central Ltd. https://creativecommons.org/licenses/by/2.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0 (https://creativecommons.org/licenses/by/2.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Schapira, Mathilde
Buscot, Marie-Jeanne
Pollet, Thomas
Leterme, Sophie C
Seuront, Laurent
Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title_full Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title_fullStr Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title_full_unstemmed Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title_short Distribution of picophytoplankton communities from brackish to hypersaline waters in a South Australian coastal lagoon
title_sort distribution of picophytoplankton communities from brackish to hypersaline waters in a south australian coastal lagoon
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2847571/
https://www.ncbi.nlm.nih.gov/pubmed/20178652
http://dx.doi.org/10.1186/1746-1448-6-2
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