Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs

Ecosystem-based coastal protection by means of conserving, restoring or creating intertidal ecosystems that attenuate waves and stabilize shorelines, offers a promising way to climate proof coastlines for the future. The Pacific oyster (Crassostrea gigas) is an ecosystem engineering species, which i...

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Published in:Ecological Engineering
Main Authors: Salvador de Paiva, J.N., Walles, B., Ysebaert, T., Bouma, T.J.
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:http://imis.nioz.nl/imis.php?module=ref&refid=293296
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spelling ftnioz:oai:imis.nioz.nl:293296 2023-05-15T15:58:20+02:00 Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs Salvador de Paiva, J.N. Walles, B. Ysebaert, T. Bouma, T.J. 2018 http://imis.nioz.nl/imis.php?module=ref&refid=293296 en eng info:eu-repo/semantics/altIdentifier/wos/000424938300012 info:eu-repo/semantics/altIdentifier/doi/.org/10.1016/j.ecoleng.2017.12.020 http://imis.nioz.nl/imis.php?module=ref&refid=293296 info:eu-repo/semantics/closedAccess %3Ci%3EEcol.+Eng.+112%3C%2Fi%3E%3A+89-95.+%3Ca+href%3D%22https%3A%2F%2Fdoi.org%2F10.1016%2Fj.ecoleng.2017.12.020%22+target%3D%22_blank%22%3Ehttps%3A%2F%2Fdoi.org%2F10.1016%2Fj.ecoleng.2017.12.020%3C%2Fa%3E Crassostrea gigas [Portuguese oyster] info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2018 ftnioz https://doi.org/10.1016/j.ecoleng.2017.12.020 2022-05-01T14:06:57Z Ecosystem-based coastal protection by means of conserving, restoring or creating intertidal ecosystems that attenuate waves and stabilize shorelines, offers a promising way to climate proof coastlines for the future. The Pacific oyster (Crassostrea gigas) is an ecosystem engineering species, which is known for its wave attenuating and sediment trapping ecosystem services, but it remains unknown to which extent this is conditional. We aim to test the hypothesis that the ecosystem engineering effect concerning sediment trapping and stability by oyster reefs is conditional, and can be predicted based on i) local physical forcing, ii) morphological characteristics of the tidal flat, and iii) biological characteristics of the oyster reef.Analyses of long-term sediment accretion patterns on natural intertidal oyster reefs at the Oosterschelde basin (The Netherlands) showed that this ecosystem engineering effect is strongest on tidal flats under erosional conditions, lower aspect ratio (i.e., relative long and narrow reefs), relatively closed reefs (i.e., few open patches) and higher coverage of oysters within reef patches. The ability of C. gigas to shape the environment thus depends both on biotic and abiotic conditions, meaning that oyster reefs only work under specific conditions for erosion control. Overall, our results provide baseline understanding for ecosystem management aimed at affecting sediment dynamics, thereby contributing to a better understanding for designing ecosystem-based solutions under different abiotic and biotic conditions. In addition, present study provides a clear example of how we need to gain a better understanding of the conditionality of ecosystem services in general, to be able to create and restore ecosystems for obtaining their services. Article in Journal/Newspaper Crassostrea gigas Pacific oyster NIOZ Repository (Royal Netherlands Institute for Sea Research) Pacific Ecological Engineering 112 89 95
institution Open Polar
collection NIOZ Repository (Royal Netherlands Institute for Sea Research)
op_collection_id ftnioz
language English
topic Crassostrea gigas [Portuguese oyster]
spellingShingle Crassostrea gigas [Portuguese oyster]
Salvador de Paiva, J.N.
Walles, B.
Ysebaert, T.
Bouma, T.J.
Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
topic_facet Crassostrea gigas [Portuguese oyster]
description Ecosystem-based coastal protection by means of conserving, restoring or creating intertidal ecosystems that attenuate waves and stabilize shorelines, offers a promising way to climate proof coastlines for the future. The Pacific oyster (Crassostrea gigas) is an ecosystem engineering species, which is known for its wave attenuating and sediment trapping ecosystem services, but it remains unknown to which extent this is conditional. We aim to test the hypothesis that the ecosystem engineering effect concerning sediment trapping and stability by oyster reefs is conditional, and can be predicted based on i) local physical forcing, ii) morphological characteristics of the tidal flat, and iii) biological characteristics of the oyster reef.Analyses of long-term sediment accretion patterns on natural intertidal oyster reefs at the Oosterschelde basin (The Netherlands) showed that this ecosystem engineering effect is strongest on tidal flats under erosional conditions, lower aspect ratio (i.e., relative long and narrow reefs), relatively closed reefs (i.e., few open patches) and higher coverage of oysters within reef patches. The ability of C. gigas to shape the environment thus depends both on biotic and abiotic conditions, meaning that oyster reefs only work under specific conditions for erosion control. Overall, our results provide baseline understanding for ecosystem management aimed at affecting sediment dynamics, thereby contributing to a better understanding for designing ecosystem-based solutions under different abiotic and biotic conditions. In addition, present study provides a clear example of how we need to gain a better understanding of the conditionality of ecosystem services in general, to be able to create and restore ecosystems for obtaining their services.
format Article in Journal/Newspaper
author Salvador de Paiva, J.N.
Walles, B.
Ysebaert, T.
Bouma, T.J.
author_facet Salvador de Paiva, J.N.
Walles, B.
Ysebaert, T.
Bouma, T.J.
author_sort Salvador de Paiva, J.N.
title Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
title_short Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
title_full Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
title_fullStr Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
title_full_unstemmed Understanding the conditionality of ecosystem services: The effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
title_sort understanding the conditionality of ecosystem services: the effect of tidal flat morphology and oyster reef characteristics on sediment stabilization by oyster reefs
publishDate 2018
url http://imis.nioz.nl/imis.php?module=ref&refid=293296
geographic Pacific
geographic_facet Pacific
genre Crassostrea gigas
Pacific oyster
genre_facet Crassostrea gigas
Pacific oyster
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