Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization

Global change impacts important environmental drivers for pelagic gross primary production (GPP) in northern lakes, such as temperature, light, nutrient, and inorganic carbon availability. Separate and/or synergistic impacts of these environmental drivers on pelagic GPP remain largely unresolved. He...

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Published in:Global Change Biology
Main Authors: Puts, Isolde C., Ask, Jenny, Deininger, Anne, Jonsson, Anders, Karlsson, Jan, Bergström, Ann-Kristin
Format: Article in Journal/Newspaper
Language:English
Published: 2022
Subjects:
Online Access:https://hdl.handle.net/11250/3057649
https://doi.org/10.1111/gcb.16469
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spelling ftnorskinstvf:oai:niva.brage.unit.no:11250/3057649 2023-05-15T14:59:54+02:00 Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization Puts, Isolde C. Ask, Jenny Deininger, Anne Jonsson, Anders Karlsson, Jan Bergström, Ann-Kristin 2022 application/pdf https://hdl.handle.net/11250/3057649 https://doi.org/10.1111/gcb.16469 eng eng Global Change Biology. 2022, 29 (2), 375-390. urn:issn:1354-1013 https://hdl.handle.net/11250/3057649 https://doi.org/10.1111/gcb.16469 cristin:2063787 Navngivelse 4.0 Internasjonal http://creativecommons.org/licenses/by/4.0/deed.no 375-390 29 Global Change Biology 2 Peer reviewed Journal article 2022 ftnorskinstvf https://doi.org/10.1111/gcb.16469 2023-03-15T23:44:15Z Global change impacts important environmental drivers for pelagic gross primary production (GPP) in northern lakes, such as temperature, light, nutrient, and inorganic carbon availability. Separate and/or synergistic impacts of these environmental drivers on pelagic GPP remain largely unresolved. Here, we assess key drivers of pelagic GPP by combining detailed depth profiles of summer pelagic GPP with environmental and climatic data across 45 small and shallow lakes across northern Sweden (20 boreal, 6 subarctic, and 19 arctic lakes). We found that across lakes summer pelagic GPP was strongest associated with lake water temperatures, lake carbon dioxide (CO2) concentrations impacted by lake water pH, and further moderated by dissolved organic carbon (DOC) concentrations influencing light and nutrient conditions. We further used this dataset to assess the extent of additional DOC-induced warming of epilimnia (here named internal warming), which was especially pronounced in shallow lakes (decreasing 0.96°C for every decreasing m in average lake depth) and increased with higher concentrations of DOC. Additionally, the total pools and relative proportion of dissolved inorganic carbon and DOC, further influenced pelagic GPP with drivers differing slightly among the boreal, subarctic and Arctic biomes. Our study provides novel insights in that global change affects pelagic GPP in northern lakes not only by modifying the organic carbon cycle and light and nutrient conditions, but also through modifications of inorganic carbon supply and temperature. Considering the large-scale impacts and similarities of global warming, browning and recovery from acidification of lakes at higher latitudes throughout the northern hemisphere, these changes are likely to operate on a global scale. publishedVersion Article in Journal/Newspaper Arctic Global warming Northern Sweden Subarctic Norwegian Institute for Water research: NIVA Open Access Archive (Brage) Arctic Browning ENVELOPE(164.050,164.050,-74.617,-74.617) Global Change Biology 29 2 375 390
institution Open Polar
collection Norwegian Institute for Water research: NIVA Open Access Archive (Brage)
op_collection_id ftnorskinstvf
language English
description Global change impacts important environmental drivers for pelagic gross primary production (GPP) in northern lakes, such as temperature, light, nutrient, and inorganic carbon availability. Separate and/or synergistic impacts of these environmental drivers on pelagic GPP remain largely unresolved. Here, we assess key drivers of pelagic GPP by combining detailed depth profiles of summer pelagic GPP with environmental and climatic data across 45 small and shallow lakes across northern Sweden (20 boreal, 6 subarctic, and 19 arctic lakes). We found that across lakes summer pelagic GPP was strongest associated with lake water temperatures, lake carbon dioxide (CO2) concentrations impacted by lake water pH, and further moderated by dissolved organic carbon (DOC) concentrations influencing light and nutrient conditions. We further used this dataset to assess the extent of additional DOC-induced warming of epilimnia (here named internal warming), which was especially pronounced in shallow lakes (decreasing 0.96°C for every decreasing m in average lake depth) and increased with higher concentrations of DOC. Additionally, the total pools and relative proportion of dissolved inorganic carbon and DOC, further influenced pelagic GPP with drivers differing slightly among the boreal, subarctic and Arctic biomes. Our study provides novel insights in that global change affects pelagic GPP in northern lakes not only by modifying the organic carbon cycle and light and nutrient conditions, but also through modifications of inorganic carbon supply and temperature. Considering the large-scale impacts and similarities of global warming, browning and recovery from acidification of lakes at higher latitudes throughout the northern hemisphere, these changes are likely to operate on a global scale. publishedVersion
format Article in Journal/Newspaper
author Puts, Isolde C.
Ask, Jenny
Deininger, Anne
Jonsson, Anders
Karlsson, Jan
Bergström, Ann-Kristin
spellingShingle Puts, Isolde C.
Ask, Jenny
Deininger, Anne
Jonsson, Anders
Karlsson, Jan
Bergström, Ann-Kristin
Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
author_facet Puts, Isolde C.
Ask, Jenny
Deininger, Anne
Jonsson, Anders
Karlsson, Jan
Bergström, Ann-Kristin
author_sort Puts, Isolde C.
title Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
title_short Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
title_full Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
title_fullStr Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
title_full_unstemmed Browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
title_sort browning affects pelagic productivity in northern lakes by surface water warming and carbon fertilization
publishDate 2022
url https://hdl.handle.net/11250/3057649
https://doi.org/10.1111/gcb.16469
long_lat ENVELOPE(164.050,164.050,-74.617,-74.617)
geographic Arctic
Browning
geographic_facet Arctic
Browning
genre Arctic
Global warming
Northern Sweden
Subarctic
genre_facet Arctic
Global warming
Northern Sweden
Subarctic
op_source 375-390
29
Global Change Biology
2
op_relation Global Change Biology. 2022, 29 (2), 375-390.
urn:issn:1354-1013
https://hdl.handle.net/11250/3057649
https://doi.org/10.1111/gcb.16469
cristin:2063787
op_rights Navngivelse 4.0 Internasjonal
http://creativecommons.org/licenses/by/4.0/deed.no
op_doi https://doi.org/10.1111/gcb.16469
container_title Global Change Biology
container_volume 29
container_issue 2
container_start_page 375
op_container_end_page 390
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