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A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps

Seagrasses are important habitat-formers and ecosystem engineers that are under threat from bloom-forming seaweeds. These seaweeds have been suggested to outcompete the seagrasses, particularly when facilitated by eutrophication, causing regime shifts where green meadows and clear waters are replace...

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Autores principales: Thomsen, Mads S., Wernberg, Thomas, Engelen, Aschwin H., Tuya, Fernando, Vanderklift, Mat A., Holmer, Marianne, McGlathery, Karen J., Arenas, Francisco, Kotta, Jonne, Silliman, Brian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3254607/
https://www.ncbi.nlm.nih.gov/pubmed/22253693
http://dx.doi.org/10.1371/journal.pone.0028595
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author Thomsen, Mads S.
Wernberg, Thomas
Engelen, Aschwin H.
Tuya, Fernando
Vanderklift, Mat A.
Holmer, Marianne
McGlathery, Karen J.
Arenas, Francisco
Kotta, Jonne
Silliman, Brian R.
author_facet Thomsen, Mads S.
Wernberg, Thomas
Engelen, Aschwin H.
Tuya, Fernando
Vanderklift, Mat A.
Holmer, Marianne
McGlathery, Karen J.
Arenas, Francisco
Kotta, Jonne
Silliman, Brian R.
author_sort Thomsen, Mads S.
collection PubMed
description Seagrasses are important habitat-formers and ecosystem engineers that are under threat from bloom-forming seaweeds. These seaweeds have been suggested to outcompete the seagrasses, particularly when facilitated by eutrophication, causing regime shifts where green meadows and clear waters are replaced with unstable sediments, turbid waters, hypoxia, and poor habitat conditions for fishes and invertebrates. Understanding the situations under which seaweeds impact seagrasses on local patch scales can help proactive management and prevent losses at greater scales. Here, we provide a quantitative review of available published manipulative experiments (all conducted at the patch-scale), to test which attributes of seaweeds and seagrasses (e.g., their abundances, sizes, morphology, taxonomy, attachment type, or origin) influence impacts. Weighted and unweighted meta-analyses (Hedges d metric) of 59 experiments showed generally high variability in attribute-impact relationships. Our main significant findings were that (a) abundant seaweeds had stronger negative impacts on seagrasses than sparse seaweeds, (b) unattached and epiphytic seaweeds had stronger impacts than ‘rooted’ seaweeds, and (c) small seagrass species were more susceptible than larger species. Findings (a) and (c) were rather intuitive. It was more surprising that ‘rooted’ seaweeds had comparatively small impacts, particularly given that this category included the infamous invasive Caulerpa species. This result may reflect that seaweed biomass and/or shading and metabolic by-products like anoxia and sulphides could be lower for rooted seaweeds. In conclusion, our results represent simple and robust first-order generalities about seaweed impacts on seagrasses. This review also documented a limited number of primary studies. We therefore identified major knowledge gaps that need to be addressed before general predictive models on seaweed-seagrass interactions can be build, in order to effectively protect seagrass habitats from detrimental competition from seaweeds.
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spelling pubmed-32546072012-01-17 A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps Thomsen, Mads S. Wernberg, Thomas Engelen, Aschwin H. Tuya, Fernando Vanderklift, Mat A. Holmer, Marianne McGlathery, Karen J. Arenas, Francisco Kotta, Jonne Silliman, Brian R. PLoS One Research Article Seagrasses are important habitat-formers and ecosystem engineers that are under threat from bloom-forming seaweeds. These seaweeds have been suggested to outcompete the seagrasses, particularly when facilitated by eutrophication, causing regime shifts where green meadows and clear waters are replaced with unstable sediments, turbid waters, hypoxia, and poor habitat conditions for fishes and invertebrates. Understanding the situations under which seaweeds impact seagrasses on local patch scales can help proactive management and prevent losses at greater scales. Here, we provide a quantitative review of available published manipulative experiments (all conducted at the patch-scale), to test which attributes of seaweeds and seagrasses (e.g., their abundances, sizes, morphology, taxonomy, attachment type, or origin) influence impacts. Weighted and unweighted meta-analyses (Hedges d metric) of 59 experiments showed generally high variability in attribute-impact relationships. Our main significant findings were that (a) abundant seaweeds had stronger negative impacts on seagrasses than sparse seaweeds, (b) unattached and epiphytic seaweeds had stronger impacts than ‘rooted’ seaweeds, and (c) small seagrass species were more susceptible than larger species. Findings (a) and (c) were rather intuitive. It was more surprising that ‘rooted’ seaweeds had comparatively small impacts, particularly given that this category included the infamous invasive Caulerpa species. This result may reflect that seaweed biomass and/or shading and metabolic by-products like anoxia and sulphides could be lower for rooted seaweeds. In conclusion, our results represent simple and robust first-order generalities about seaweed impacts on seagrasses. This review also documented a limited number of primary studies. We therefore identified major knowledge gaps that need to be addressed before general predictive models on seaweed-seagrass interactions can be build, in order to effectively protect seagrass habitats from detrimental competition from seaweeds. Public Library of Science 2012-01-10 /pmc/articles/PMC3254607/ /pubmed/22253693 http://dx.doi.org/10.1371/journal.pone.0028595 Text en Thomsen 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
Thomsen, Mads S.
Wernberg, Thomas
Engelen, Aschwin H.
Tuya, Fernando
Vanderklift, Mat A.
Holmer, Marianne
McGlathery, Karen J.
Arenas, Francisco
Kotta, Jonne
Silliman, Brian R.
A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title_full A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title_fullStr A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title_full_unstemmed A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title_short A Meta-Analysis of Seaweed Impacts on Seagrasses: Generalities and Knowledge Gaps
title_sort meta-analysis of seaweed impacts on seagrasses: generalities and knowledge gaps
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3254607/
https://www.ncbi.nlm.nih.gov/pubmed/22253693
http://dx.doi.org/10.1371/journal.pone.0028595
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