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Productivity in the Barents Sea - Response to Recent Climate Variability

The temporal and spatial dynamics of primary and secondary biomass/production in the Barents Sea since the late 1990s are examined using remote sensing data, observations and a coupled physical-biological model. Field observations of mesozooplankton biomass, and chlorophyll a data from transects (di...

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Autores principales: Dalpadado, Padmini, Arrigo, Kevin R., Hjøllo, Solfrid S., Rey, Francisco, Ingvaldsen, Randi B., Sperfeld, Erik, van Dijken, Gert L., Stige, Leif C., Olsen, Are, Ottersen, Geir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4006807/
https://www.ncbi.nlm.nih.gov/pubmed/24788513
http://dx.doi.org/10.1371/journal.pone.0095273
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author Dalpadado, Padmini
Arrigo, Kevin R.
Hjøllo, Solfrid S.
Rey, Francisco
Ingvaldsen, Randi B.
Sperfeld, Erik
van Dijken, Gert L.
Stige, Leif C.
Olsen, Are
Ottersen, Geir
author_facet Dalpadado, Padmini
Arrigo, Kevin R.
Hjøllo, Solfrid S.
Rey, Francisco
Ingvaldsen, Randi B.
Sperfeld, Erik
van Dijken, Gert L.
Stige, Leif C.
Olsen, Are
Ottersen, Geir
author_sort Dalpadado, Padmini
collection PubMed
description The temporal and spatial dynamics of primary and secondary biomass/production in the Barents Sea since the late 1990s are examined using remote sensing data, observations and a coupled physical-biological model. Field observations of mesozooplankton biomass, and chlorophyll a data from transects (different seasons) and large-scale surveys (autumn) were used for validation of the remote sensing products and modeling results. The validation showed that satellite data are well suited to study temporal and spatial dynamics of chlorophyll a in the Barents Sea and that the model is an essential tool for secondary production estimates. Temperature, open water area, chlorophyll a, and zooplankton biomass show large interannual variations in the Barents Sea. The climatic variability is strongest in the northern and eastern parts. The moderate increase in net primary production evident in this study is likely an ecosystem response to changes in climate during the same period. Increased open water area and duration of open water season, which are related to elevated temperatures, appear to be the key drivers of the changes in annual net primary production that has occurred in the northern and eastern areas of this ecosystem. The temporal and spatial variability in zooplankton biomass appears to be controlled largely by predation pressure. In the southeastern Barents Sea, statistically significant linkages were observed between chlorophyll a and zooplankton biomass, as well as between net primary production and fish biomass, indicating bottom-up trophic interactions in this region.
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spelling pubmed-40068072014-05-09 Productivity in the Barents Sea - Response to Recent Climate Variability Dalpadado, Padmini Arrigo, Kevin R. Hjøllo, Solfrid S. Rey, Francisco Ingvaldsen, Randi B. Sperfeld, Erik van Dijken, Gert L. Stige, Leif C. Olsen, Are Ottersen, Geir PLoS One Research Article The temporal and spatial dynamics of primary and secondary biomass/production in the Barents Sea since the late 1990s are examined using remote sensing data, observations and a coupled physical-biological model. Field observations of mesozooplankton biomass, and chlorophyll a data from transects (different seasons) and large-scale surveys (autumn) were used for validation of the remote sensing products and modeling results. The validation showed that satellite data are well suited to study temporal and spatial dynamics of chlorophyll a in the Barents Sea and that the model is an essential tool for secondary production estimates. Temperature, open water area, chlorophyll a, and zooplankton biomass show large interannual variations in the Barents Sea. The climatic variability is strongest in the northern and eastern parts. The moderate increase in net primary production evident in this study is likely an ecosystem response to changes in climate during the same period. Increased open water area and duration of open water season, which are related to elevated temperatures, appear to be the key drivers of the changes in annual net primary production that has occurred in the northern and eastern areas of this ecosystem. The temporal and spatial variability in zooplankton biomass appears to be controlled largely by predation pressure. In the southeastern Barents Sea, statistically significant linkages were observed between chlorophyll a and zooplankton biomass, as well as between net primary production and fish biomass, indicating bottom-up trophic interactions in this region. Public Library of Science 2014-05-01 /pmc/articles/PMC4006807/ /pubmed/24788513 http://dx.doi.org/10.1371/journal.pone.0095273 Text en © 2014 Dalpadado 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dalpadado, Padmini
Arrigo, Kevin R.
Hjøllo, Solfrid S.
Rey, Francisco
Ingvaldsen, Randi B.
Sperfeld, Erik
van Dijken, Gert L.
Stige, Leif C.
Olsen, Are
Ottersen, Geir
Productivity in the Barents Sea - Response to Recent Climate Variability
title Productivity in the Barents Sea - Response to Recent Climate Variability
title_full Productivity in the Barents Sea - Response to Recent Climate Variability
title_fullStr Productivity in the Barents Sea - Response to Recent Climate Variability
title_full_unstemmed Productivity in the Barents Sea - Response to Recent Climate Variability
title_short Productivity in the Barents Sea - Response to Recent Climate Variability
title_sort productivity in the barents sea - response to recent climate variability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4006807/
https://www.ncbi.nlm.nih.gov/pubmed/24788513
http://dx.doi.org/10.1371/journal.pone.0095273
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