Excess particulate organic matter negatively affects the ecophysiology of the widespread soft coral Xenia umbellata

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Hauptverfasser: Hill, Claudia E L, Rücker, Julia, Eichhorn, Nele, Mezger, Selma D, Caporale, Giulia, El-Khaled, Yusuf C, Blanco, Sahara, Wild, Christian, Tilstra, Arjen
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Sprache:en
Veröffentlicht: PANGAEA 2025
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author Hill, Claudia E L
Rücker, Julia
Eichhorn, Nele
Mezger, Selma D
Caporale, Giulia
El-Khaled, Yusuf C
Blanco, Sahara
Wild, Christian
Tilstra, Arjen
author_facet Hill, Claudia E L
Rücker, Julia
Eichhorn, Nele
Mezger, Selma D
Caporale, Giulia
El-Khaled, Yusuf C
Blanco, Sahara
Wild, Christian
Tilstra, Arjen
collection Datos científicos de ciencias marinas y ambientales
contents Coastal coral reefs are experiencing rising concentrations of organic matter. While dissolved organic matter (DOM), rather than particulate organic matter (POM), may negatively impact hard corals, the impact on soft corals remains unclear. We examined the physiological effect of 20 mg L-1 of organic carbon (C) addition on the widespread Indo-Pacific soft coral Xenia umbellata in a series of tank experiments over 28 days. We supplied DOM as glucose, and two POM sources as phytoplankton (2 - 5 µm length) and zooplankton (150 – 200 µm length). We comparatively assessed coral morphology, pulsation, colouration, algal symbiont densities, chlorophyll a, oxygen fluxes, and mortality. Corals in the control and DOM enrichment treatments exhibited no morphological or physiological changes, whereas, excess phyto- and zooplankton caused disfigurement of the polyp tentacles and shortening of its pinnules. This coincided with a mortality of 11 and 14%, respectively, a 35% reduction in pulsation rates, and darkening of the polyps (with excess zooplankton), while other assessed response variables remained stable. This suggests that in contrast to many hard corals, the soft coral X. umbellata is vulnerable to excess POM rather than DOM, with amplified effects upon exposure to larger particles. Our results suggest that excess POM may damage the delicate feeding apparatus of X. umbellata, thereby reducing pulsation and lowering gas exchange. In turn, this can cause nutritional, and ultimately, energy deficiencies by directly affecting heterotrophic and autotrophic feeding. Our findings indicate that the global-change-resilient soft coral X. umbellata is vulnerable to local eutrophication, particularly high concentrations of POM. Xenia umbellata originates from the Red Sea.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_974797
institution PANGAEA
language en
publishDate 2025
publisher PANGAEA
record_format pangaea
spellingShingle Excess particulate organic matter negatively affects the ecophysiology of the widespread soft coral Xenia umbellata
Hill, Claudia E L
Rücker, Julia
Eichhorn, Nele
Mezger, Selma D
Caporale, Giulia
El-Khaled, Yusuf C
Blanco, Sahara
Wild, Christian
Tilstra, Arjen
Laboratory experiment
Coastal coral reefs are experiencing rising concentrations of organic matter. While dissolved organic matter (DOM), rather than particulate organic matter (POM), may negatively impact hard corals, the impact on soft corals remains unclear. We examined the physiological effect of 20 mg L-1 of organic carbon (C) addition on the widespread Indo-Pacific soft coral Xenia umbellata in a series of tank experiments over 28 days. We supplied DOM as glucose, and two POM sources as phytoplankton (2 - 5 µm length) and zooplankton (150 – 200 µm length). We comparatively assessed coral morphology, pulsation, colouration, algal symbiont densities, chlorophyll a, oxygen fluxes, and mortality. Corals in the control and DOM enrichment treatments exhibited no morphological or physiological changes, whereas, excess phyto- and zooplankton caused disfigurement of the polyp tentacles and shortening of its pinnules. This coincided with a mortality of 11 and 14%, respectively, a 35% reduction in pulsation rates, and darkening of the polyps (with excess zooplankton), while other assessed response variables remained stable. This suggests that in contrast to many hard corals, the soft coral X. umbellata is vulnerable to excess POM rather than DOM, with amplified effects upon exposure to larger particles. Our results suggest that excess POM may damage the delicate feeding apparatus of X. umbellata, thereby reducing pulsation and lowering gas exchange. In turn, this can cause nutritional, and ultimately, energy deficiencies by directly affecting heterotrophic and autotrophic feeding. Our findings indicate that the global-change-resilient soft coral X. umbellata is vulnerable to local eutrophication, particularly high concentrations of POM. Xenia umbellata originates from the Red Sea.
title Excess particulate organic matter negatively affects the ecophysiology of the widespread soft coral Xenia umbellata
topic Laboratory experiment
url https://doi.org/10.1594/PANGAEA.974797