Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks

Background Mono-specific aquaculture effluents contain high concentrations of nutrients and organic matter, which affect negatively the water quality of the recipient ecosystems. A fundamental feature of water quality is its transparency. The fraction of dissolved organic matter that absorbs light i...

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Main Authors: Seyed Mohammad Sadeghi-Nassaj, Teresa S. Catalá, Pedro A. Álvarez, Isabel Reche
Format: Article
Language:English
Published: PeerJ Inc. 2018-02-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/4344.pdf
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spelling doaj-1e209965eeeb4b5d8cf188ff6d359cde2020-11-24T22:35:52ZengPeerJ Inc.PeerJ2167-83592018-02-016e434410.7717/peerj.4344Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanksSeyed Mohammad Sadeghi-Nassaj0Teresa S. Catalá1Pedro A. Álvarez2Isabel Reche3Departamento de Ecología and Instituto del Agua, Facultad de Ciencias, Universidad de Granada, Granada, SpainDepartamento de Ecología and Instituto del Agua, Facultad de Ciencias, Universidad de Granada, Granada, SpainiMare Natural S.L., Motril, Granada, SpainDepartamento de Ecología and Instituto del Agua, Facultad de Ciencias, Universidad de Granada, Granada, SpainBackground Mono-specific aquaculture effluents contain high concentrations of nutrients and organic matter, which affect negatively the water quality of the recipient ecosystems. A fundamental feature of water quality is its transparency. The fraction of dissolved organic matter that absorbs light is named chromophoric dissolved organic matter (CDOM). A sustainable alternative to mono-specific aquaculture is the multitrophic aquaculture that includes species trophically complementary named “extractive” species that uptake the waste byproducts. Sea cucumbers are recognized as efficient extractive species due to the consumption of particulate organic matter (POM). However, the effects of sea cucumbers on CDOM are still unknown. Methods During more than one year, we monitored CDOM in two big-volume tanks with different trophic structure. One of the tanks (−holothurian) only contained around 810 individuals of Anemonia sulcata, whereas the other tank (+holothurian) also included 90 individuals of Holothuria tubulosa and Holothuria forskali. We routinely analyzed CDOM absorption spectra and determined quantitative (absorption coefficients at 325 nm) and qualitative (spectral slopes) optical parameters in the inlet waters, within the tanks, and in their corresponding effluents. To confirm the time-series results, we also performed three experiments. Each experiment consisted of two treatments: +holothurians (+H) and –holothurians (−H). We set up three +H tanks with 80 individuals of A. sulcata and 10 individuals of H. tubulosa in each tank and four –H tanks that contained only 80 individuals of A. sulcata. Results In the time-series, absorption coefficients at 325 nm (a325) and spectral slopes from 275 to 295 nm (S275−295) were significantly lower in the effluent of the +holothurian tank (average: 0.33 m−1 and 16 µm−1, respectively) than in the effluent of the −holothurian tank (average: 0.69 m−1 and 34 µm−1, respectively), the former being similar to those found in the inlet waters (average: 0.32 m−1 and 22 µm−1, respectively). This reduction in the absorption of the dissolved organic matter appears to be mediated by the POM consumption by holothurians. The experiments confirmed the results observed in the time-series. The a325 and S275−295 values were significantly lower in the treatment with holothurians than in the treatment without holothurians indicating a reduction in the concentration of chromophoric organic compounds, particularly of low molecular weight. Discussion Consequently, sea cucumbers appear to improve water transparency in aquaculture tanks. The underlying mechanism of this improvement might be related to the POM consumption by holothurians, which reduces the concentration of CDOM derived from POM disaggregation or to the direct assimilation of dissolved compounds of low molecular weight as chromophoric amino acids.https://peerj.com/articles/4344.pdfSea cucumbersExtractive speciesChromophoric dissolved organic matterMultitrophic aquacultureWater transparency
collection DOAJ
language English
format Article
sources DOAJ
author Seyed Mohammad Sadeghi-Nassaj
Teresa S. Catalá
Pedro A. Álvarez
Isabel Reche
spellingShingle Seyed Mohammad Sadeghi-Nassaj
Teresa S. Catalá
Pedro A. Álvarez
Isabel Reche
Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
PeerJ
Sea cucumbers
Extractive species
Chromophoric dissolved organic matter
Multitrophic aquaculture
Water transparency
author_facet Seyed Mohammad Sadeghi-Nassaj
Teresa S. Catalá
Pedro A. Álvarez
Isabel Reche
author_sort Seyed Mohammad Sadeghi-Nassaj
title Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
title_short Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
title_full Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
title_fullStr Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
title_full_unstemmed Sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
title_sort sea cucumbers reduce chromophoric dissolved organic matter in aquaculture tanks
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2018-02-01
description Background Mono-specific aquaculture effluents contain high concentrations of nutrients and organic matter, which affect negatively the water quality of the recipient ecosystems. A fundamental feature of water quality is its transparency. The fraction of dissolved organic matter that absorbs light is named chromophoric dissolved organic matter (CDOM). A sustainable alternative to mono-specific aquaculture is the multitrophic aquaculture that includes species trophically complementary named “extractive” species that uptake the waste byproducts. Sea cucumbers are recognized as efficient extractive species due to the consumption of particulate organic matter (POM). However, the effects of sea cucumbers on CDOM are still unknown. Methods During more than one year, we monitored CDOM in two big-volume tanks with different trophic structure. One of the tanks (−holothurian) only contained around 810 individuals of Anemonia sulcata, whereas the other tank (+holothurian) also included 90 individuals of Holothuria tubulosa and Holothuria forskali. We routinely analyzed CDOM absorption spectra and determined quantitative (absorption coefficients at 325 nm) and qualitative (spectral slopes) optical parameters in the inlet waters, within the tanks, and in their corresponding effluents. To confirm the time-series results, we also performed three experiments. Each experiment consisted of two treatments: +holothurians (+H) and –holothurians (−H). We set up three +H tanks with 80 individuals of A. sulcata and 10 individuals of H. tubulosa in each tank and four –H tanks that contained only 80 individuals of A. sulcata. Results In the time-series, absorption coefficients at 325 nm (a325) and spectral slopes from 275 to 295 nm (S275−295) were significantly lower in the effluent of the +holothurian tank (average: 0.33 m−1 and 16 µm−1, respectively) than in the effluent of the −holothurian tank (average: 0.69 m−1 and 34 µm−1, respectively), the former being similar to those found in the inlet waters (average: 0.32 m−1 and 22 µm−1, respectively). This reduction in the absorption of the dissolved organic matter appears to be mediated by the POM consumption by holothurians. The experiments confirmed the results observed in the time-series. The a325 and S275−295 values were significantly lower in the treatment with holothurians than in the treatment without holothurians indicating a reduction in the concentration of chromophoric organic compounds, particularly of low molecular weight. Discussion Consequently, sea cucumbers appear to improve water transparency in aquaculture tanks. The underlying mechanism of this improvement might be related to the POM consumption by holothurians, which reduces the concentration of CDOM derived from POM disaggregation or to the direct assimilation of dissolved compounds of low molecular weight as chromophoric amino acids.
topic Sea cucumbers
Extractive species
Chromophoric dissolved organic matter
Multitrophic aquaculture
Water transparency
url https://peerj.com/articles/4344.pdf
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