Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords

As the environmental conditions are typically not homogenous, especially in coastal regions, they must provide a mosaic of distinct habitats that can be occupied by particles and plankton in a characteristic way. Here we analyze and map the spatio-temporal distribution patterns and the internal stru...

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Published in:Frontiers in Marine Science
Main Authors: Trudnowska, Emilia, Dragańska-Deja, Katarzyna, Sagan, Sławomir, Błachowiak-Samołyk, Katarzyna
Other Authors: Narodowe Centrum Nauki
Format: Article in Journal/Newspaper
Language:unknown
Published: Frontiers Media SA 2022
Subjects:
Online Access:http://dx.doi.org/10.3389/fmars.2022.909457
https://www.frontiersin.org/articles/10.3389/fmars.2022.909457/full
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spelling crfrontiers:10.3389/fmars.2022.909457 2024-05-12T07:59:53+00:00 Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords Trudnowska, Emilia Dragańska-Deja, Katarzyna Sagan, Sławomir Błachowiak-Samołyk, Katarzyna Narodowe Centrum Nauki 2022 http://dx.doi.org/10.3389/fmars.2022.909457 https://www.frontiersin.org/articles/10.3389/fmars.2022.909457/full unknown Frontiers Media SA https://creativecommons.org/licenses/by/4.0/ Frontiers in Marine Science volume 9 ISSN 2296-7745 Ocean Engineering Water Science and Technology Aquatic Science Global and Planetary Change Oceanography journal-article 2022 crfrontiers https://doi.org/10.3389/fmars.2022.909457 2024-04-18T07:55:01Z As the environmental conditions are typically not homogenous, especially in coastal regions, they must provide a mosaic of distinct habitats that can be occupied by particles and plankton in a characteristic way. Here we analyze and map the spatio-temporal distribution patterns and the internal structure of 94 patches of various size fractions of particles and plankton studied by fine resolution measurements of two compatible laser counters performed in the upper epipelagial of two Arctic fjords over six summer seasons. Detected patches generally occupied only the minor part of the studied upper water column (on average 12%), and frequently occurred as multi-size-fraction forms. The observed concentrations within the patches were mostly 1.6 times higher than the background concentrations (max 4.1). The patches ranged in size horizontally from 1 to 92 km (median length 12 km) and vertically from 5 to 50 m (median 26 m). Because the designated patches varied in terms of their shapes and internal structure, a novel classification approach to of patches is proposed. Accordingly, seven types of patches were distinguished: Belt, Triangle, Diamond, Flare, Fingers, Flag, and Rosette. The particles and plankton exhibited all types of these distribution patterns, regardless of the size fraction and location. The observed steepening size spectra slopes over years implies that proliferating Atlantic water advection, triggering increasing role of the smallest size fractions, played the crucial role on compositional dynamics on temporal scale. The recurring high concentration patches of particles and plankton near glaciers suggest that their melting, together with biological production, were the strongest factors generating patchiness on the local scale. An observed under several occasions depth differentiation among size fractions building together vertically thin multi-size-fraction patches is an interesting feature for further studies. Even if distribution patterns of particles and plankton did not clearly reflect all ... Article in Journal/Newspaper Arctic Frontiers (Publisher) Arctic Frontiers in Marine Science 9
institution Open Polar
collection Frontiers (Publisher)
op_collection_id crfrontiers
language unknown
topic Ocean Engineering
Water Science and Technology
Aquatic Science
Global and Planetary Change
Oceanography
spellingShingle Ocean Engineering
Water Science and Technology
Aquatic Science
Global and Planetary Change
Oceanography
Trudnowska, Emilia
Dragańska-Deja, Katarzyna
Sagan, Sławomir
Błachowiak-Samołyk, Katarzyna
Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
topic_facet Ocean Engineering
Water Science and Technology
Aquatic Science
Global and Planetary Change
Oceanography
description As the environmental conditions are typically not homogenous, especially in coastal regions, they must provide a mosaic of distinct habitats that can be occupied by particles and plankton in a characteristic way. Here we analyze and map the spatio-temporal distribution patterns and the internal structure of 94 patches of various size fractions of particles and plankton studied by fine resolution measurements of two compatible laser counters performed in the upper epipelagial of two Arctic fjords over six summer seasons. Detected patches generally occupied only the minor part of the studied upper water column (on average 12%), and frequently occurred as multi-size-fraction forms. The observed concentrations within the patches were mostly 1.6 times higher than the background concentrations (max 4.1). The patches ranged in size horizontally from 1 to 92 km (median length 12 km) and vertically from 5 to 50 m (median 26 m). Because the designated patches varied in terms of their shapes and internal structure, a novel classification approach to of patches is proposed. Accordingly, seven types of patches were distinguished: Belt, Triangle, Diamond, Flare, Fingers, Flag, and Rosette. The particles and plankton exhibited all types of these distribution patterns, regardless of the size fraction and location. The observed steepening size spectra slopes over years implies that proliferating Atlantic water advection, triggering increasing role of the smallest size fractions, played the crucial role on compositional dynamics on temporal scale. The recurring high concentration patches of particles and plankton near glaciers suggest that their melting, together with biological production, were the strongest factors generating patchiness on the local scale. An observed under several occasions depth differentiation among size fractions building together vertically thin multi-size-fraction patches is an interesting feature for further studies. Even if distribution patterns of particles and plankton did not clearly reflect all ...
author2 Narodowe Centrum Nauki
format Article in Journal/Newspaper
author Trudnowska, Emilia
Dragańska-Deja, Katarzyna
Sagan, Sławomir
Błachowiak-Samołyk, Katarzyna
author_facet Trudnowska, Emilia
Dragańska-Deja, Katarzyna
Sagan, Sławomir
Błachowiak-Samołyk, Katarzyna
author_sort Trudnowska, Emilia
title Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
title_short Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
title_full Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
title_fullStr Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
title_full_unstemmed Cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the Arctic fjords
title_sort cells of matter and life – towards understanding the structuring of particles and plankton patchiness in the arctic fjords
publisher Frontiers Media SA
publishDate 2022
url http://dx.doi.org/10.3389/fmars.2022.909457
https://www.frontiersin.org/articles/10.3389/fmars.2022.909457/full
geographic Arctic
geographic_facet Arctic
genre Arctic
genre_facet Arctic
op_source Frontiers in Marine Science
volume 9
ISSN 2296-7745
op_rights https://creativecommons.org/licenses/by/4.0/
op_doi https://doi.org/10.3389/fmars.2022.909457
container_title Frontiers in Marine Science
container_volume 9
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