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Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale

Trends and ecological consequences of phosphorus (P) decline and increasing nitrogen (N) to phosphorus (N:P) ratios in rivers and estuaries are reviewed and discussed. Results suggest that re‐oligotrophication is a dominant trend in rivers and estuaries of high‐income countries in the last two–three...

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Autores principales: Ibáñez, Carles, Caiola, Nuno, Barquín, José, Belmar, Oscar, Benito‐Granell, Xavier, Casals, Frederic, Fennessy, Siobhan, Hughes, Jocelyne, Palmer, Margaret, Peñuelas, Josep, Romero, Estela, Sardans, Jordi, Williams, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10107953/
https://www.ncbi.nlm.nih.gov/pubmed/36366939
http://dx.doi.org/10.1111/gcb.16520
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author Ibáñez, Carles
Caiola, Nuno
Barquín, José
Belmar, Oscar
Benito‐Granell, Xavier
Casals, Frederic
Fennessy, Siobhan
Hughes, Jocelyne
Palmer, Margaret
Peñuelas, Josep
Romero, Estela
Sardans, Jordi
Williams, Michael
author_facet Ibáñez, Carles
Caiola, Nuno
Barquín, José
Belmar, Oscar
Benito‐Granell, Xavier
Casals, Frederic
Fennessy, Siobhan
Hughes, Jocelyne
Palmer, Margaret
Peñuelas, Josep
Romero, Estela
Sardans, Jordi
Williams, Michael
author_sort Ibáñez, Carles
collection PubMed
description Trends and ecological consequences of phosphorus (P) decline and increasing nitrogen (N) to phosphorus (N:P) ratios in rivers and estuaries are reviewed and discussed. Results suggest that re‐oligotrophication is a dominant trend in rivers and estuaries of high‐income countries in the last two–three decades, while in low‐income countries widespread eutrophication occurs. The decline in P is well documented in hundreds of rivers of United States and the European Union, but the biotic response of rivers and estuaries besides phytoplankton decline such as trends in phytoplankton composition, changes in primary production, ecosystem shifts, cascading effects, changes in ecosystem metabolism, etc., have not been sufficiently monitored and investigated, neither the effects of N:P imbalance. N:P imbalance has significant ecological effects that need to be further investigated. There is a growing number of cases in which phytoplankton biomass have been shown to decrease due to re‐oligotrophication, but the potential regime shift from phytoplankton to macrophyte dominance described in shallow lakes has been documented only in a few rivers and estuaries yet. The main reasons why regime shifts are rarely described in rivers and estuaries are, from one hand the scarcity of data on macrophyte cover trends, and from the other hand physical factors such as peak flows or high turbidity that could prevent a general spread of submerged macrophytes as observed in shallow lakes. Moreover, re‐oligotrophication effects on rivers may be different compared to lakes (e.g., lower dominance of macrophytes) or estuaries (e.g., limitation of primary production by N instead of P) or may be dependent on river/estuary type. We conclude that river and estuary re‐oligotrophication effects are complex, diverse and still little known, and in some cases are equivalent to those described in shallow lakes, but the regime shift is more likely to occur in mid to high‐order rivers and shallow estuaries.
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spelling pubmed-101079532023-04-18 Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale Ibáñez, Carles Caiola, Nuno Barquín, José Belmar, Oscar Benito‐Granell, Xavier Casals, Frederic Fennessy, Siobhan Hughes, Jocelyne Palmer, Margaret Peñuelas, Josep Romero, Estela Sardans, Jordi Williams, Michael Glob Chang Biol Review Trends and ecological consequences of phosphorus (P) decline and increasing nitrogen (N) to phosphorus (N:P) ratios in rivers and estuaries are reviewed and discussed. Results suggest that re‐oligotrophication is a dominant trend in rivers and estuaries of high‐income countries in the last two–three decades, while in low‐income countries widespread eutrophication occurs. The decline in P is well documented in hundreds of rivers of United States and the European Union, but the biotic response of rivers and estuaries besides phytoplankton decline such as trends in phytoplankton composition, changes in primary production, ecosystem shifts, cascading effects, changes in ecosystem metabolism, etc., have not been sufficiently monitored and investigated, neither the effects of N:P imbalance. N:P imbalance has significant ecological effects that need to be further investigated. There is a growing number of cases in which phytoplankton biomass have been shown to decrease due to re‐oligotrophication, but the potential regime shift from phytoplankton to macrophyte dominance described in shallow lakes has been documented only in a few rivers and estuaries yet. The main reasons why regime shifts are rarely described in rivers and estuaries are, from one hand the scarcity of data on macrophyte cover trends, and from the other hand physical factors such as peak flows or high turbidity that could prevent a general spread of submerged macrophytes as observed in shallow lakes. Moreover, re‐oligotrophication effects on rivers may be different compared to lakes (e.g., lower dominance of macrophytes) or estuaries (e.g., limitation of primary production by N instead of P) or may be dependent on river/estuary type. We conclude that river and estuary re‐oligotrophication effects are complex, diverse and still little known, and in some cases are equivalent to those described in shallow lakes, but the regime shift is more likely to occur in mid to high‐order rivers and shallow estuaries. John Wiley and Sons Inc. 2022-12-14 2023-03 /pmc/articles/PMC10107953/ /pubmed/36366939 http://dx.doi.org/10.1111/gcb.16520 Text en © 2022 The Authors. Global Change Biology published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Review
Ibáñez, Carles
Caiola, Nuno
Barquín, José
Belmar, Oscar
Benito‐Granell, Xavier
Casals, Frederic
Fennessy, Siobhan
Hughes, Jocelyne
Palmer, Margaret
Peñuelas, Josep
Romero, Estela
Sardans, Jordi
Williams, Michael
Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title_full Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title_fullStr Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title_full_unstemmed Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title_short Ecosystem‐level effects of re‐oligotrophication and N:P imbalances in rivers and estuaries on a global scale
title_sort ecosystem‐level effects of re‐oligotrophication and n:p imbalances in rivers and estuaries on a global scale
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10107953/
https://www.ncbi.nlm.nih.gov/pubmed/36366939
http://dx.doi.org/10.1111/gcb.16520
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