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Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach

Benthic—pelagic coupling plays a pivotal role in aquatic ecosystems but the effects of fishery driven interactions on its functioning has been largely overlooked. Disentangling the benthic—pelagic links including effects of mixed fisheries, however, needs sketching a whole description of ecosystem i...

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Autores principales: Agnetta, Davide, Badalamenti, Fabio, Colloca, Francesco, D’Anna, Giovanni, Di Lorenzo, Manfredi, Fiorentino, Fabio, Garofalo, Germana, Gristina, Michele, Labanchi, Lucio, Patti, Bernardo, Pipitone, Carlo, Solidoro, Cosimo, Libralato, Simone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333361/
https://www.ncbi.nlm.nih.gov/pubmed/30645620
http://dx.doi.org/10.1371/journal.pone.0210659
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author Agnetta, Davide
Badalamenti, Fabio
Colloca, Francesco
D’Anna, Giovanni
Di Lorenzo, Manfredi
Fiorentino, Fabio
Garofalo, Germana
Gristina, Michele
Labanchi, Lucio
Patti, Bernardo
Pipitone, Carlo
Solidoro, Cosimo
Libralato, Simone
author_facet Agnetta, Davide
Badalamenti, Fabio
Colloca, Francesco
D’Anna, Giovanni
Di Lorenzo, Manfredi
Fiorentino, Fabio
Garofalo, Germana
Gristina, Michele
Labanchi, Lucio
Patti, Bernardo
Pipitone, Carlo
Solidoro, Cosimo
Libralato, Simone
author_sort Agnetta, Davide
collection PubMed
description Benthic—pelagic coupling plays a pivotal role in aquatic ecosystems but the effects of fishery driven interactions on its functioning has been largely overlooked. Disentangling the benthic—pelagic links including effects of mixed fisheries, however, needs sketching a whole description of ecosystem interactions using quantitative tools. A holistic food web model has been here developed in order to understand the interplay between the benthic-pelagic coupling and mixed fisheries in a Mediterranean system such as the Strait of Sicily. The reconstruction of the food web required review and integration of a vast set of local and regional biological information from bacteria to large pelagic species that were aggregated into 72 functional groups. Fisheries were described by 18 fleet segments resulting from combination of fishing gears and fishing vessel size. The input-output analysis on the food web of energy pathways allowed identifying effects of biological and fishery components. Results showed that the structure of the Strait of Sicily food web is complex. Similarly to other Mediterranean areas, the food web of the Strait of Sicily encompasses 4.5 trophic levels (TLs) with the highest TLs reached by bluefin tuna, swordfish and large hake and largely impacted by bottom trawling and large longline. Importantly, benthic-pelagic coupling is affected by direct and indirect impacts among groups of species, fleets and fleets-species through the whole trophic spectrum of the food web. Moreover, functional groups able to move on large spatial scales or life history of which is spent between shelf and slope domains play a key role in linking subsystems together and mediate interactions in the Mediterranean mixed fisheries.
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spelling pubmed-63333612019-01-31 Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach Agnetta, Davide Badalamenti, Fabio Colloca, Francesco D’Anna, Giovanni Di Lorenzo, Manfredi Fiorentino, Fabio Garofalo, Germana Gristina, Michele Labanchi, Lucio Patti, Bernardo Pipitone, Carlo Solidoro, Cosimo Libralato, Simone PLoS One Research Article Benthic—pelagic coupling plays a pivotal role in aquatic ecosystems but the effects of fishery driven interactions on its functioning has been largely overlooked. Disentangling the benthic—pelagic links including effects of mixed fisheries, however, needs sketching a whole description of ecosystem interactions using quantitative tools. A holistic food web model has been here developed in order to understand the interplay between the benthic-pelagic coupling and mixed fisheries in a Mediterranean system such as the Strait of Sicily. The reconstruction of the food web required review and integration of a vast set of local and regional biological information from bacteria to large pelagic species that were aggregated into 72 functional groups. Fisheries were described by 18 fleet segments resulting from combination of fishing gears and fishing vessel size. The input-output analysis on the food web of energy pathways allowed identifying effects of biological and fishery components. Results showed that the structure of the Strait of Sicily food web is complex. Similarly to other Mediterranean areas, the food web of the Strait of Sicily encompasses 4.5 trophic levels (TLs) with the highest TLs reached by bluefin tuna, swordfish and large hake and largely impacted by bottom trawling and large longline. Importantly, benthic-pelagic coupling is affected by direct and indirect impacts among groups of species, fleets and fleets-species through the whole trophic spectrum of the food web. Moreover, functional groups able to move on large spatial scales or life history of which is spent between shelf and slope domains play a key role in linking subsystems together and mediate interactions in the Mediterranean mixed fisheries. Public Library of Science 2019-01-15 /pmc/articles/PMC6333361/ /pubmed/30645620 http://dx.doi.org/10.1371/journal.pone.0210659 Text en © 2019 Agnetta 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Agnetta, Davide
Badalamenti, Fabio
Colloca, Francesco
D’Anna, Giovanni
Di Lorenzo, Manfredi
Fiorentino, Fabio
Garofalo, Germana
Gristina, Michele
Labanchi, Lucio
Patti, Bernardo
Pipitone, Carlo
Solidoro, Cosimo
Libralato, Simone
Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title_full Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title_fullStr Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title_full_unstemmed Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title_short Benthic-pelagic coupling mediates interactions in Mediterranean mixed fisheries: An ecosystem modeling approach
title_sort benthic-pelagic coupling mediates interactions in mediterranean mixed fisheries: an ecosystem modeling approach
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333361/
https://www.ncbi.nlm.nih.gov/pubmed/30645620
http://dx.doi.org/10.1371/journal.pone.0210659
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