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Adaptable mesocosm facility to study oil spill impacts on corals

Although numerous studies have been carried out on the impacts of oil spills on coral physiology, most have relied on laboratory assays. This scarcity is partly explained by the difficulty of reproducing realistic conditions in a laboratory setting or of performing experiments with toxic compounds i...

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Autores principales: Silva, Denise P., Duarte, Gustavo, Villela, Helena D.M., Santos, Henrique F., Rosado, Phillipe M., Rosado, João Gabriel, Rosado, Alexandre S., Ferreira, Edir M., Soriano, Adriana U., Peixoto, Raquel S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6509398/
https://www.ncbi.nlm.nih.gov/pubmed/31110670
http://dx.doi.org/10.1002/ece3.5095
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author Silva, Denise P.
Duarte, Gustavo
Villela, Helena D.M.
Santos, Henrique F.
Rosado, Phillipe M.
Rosado, João Gabriel
Rosado, Alexandre S.
Ferreira, Edir M.
Soriano, Adriana U.
Peixoto, Raquel S.
author_facet Silva, Denise P.
Duarte, Gustavo
Villela, Helena D.M.
Santos, Henrique F.
Rosado, Phillipe M.
Rosado, João Gabriel
Rosado, Alexandre S.
Ferreira, Edir M.
Soriano, Adriana U.
Peixoto, Raquel S.
author_sort Silva, Denise P.
collection PubMed
description Although numerous studies have been carried out on the impacts of oil spills on coral physiology, most have relied on laboratory assays. This scarcity is partly explained by the difficulty of reproducing realistic conditions in a laboratory setting or of performing experiments with toxic compounds in the field. Mesocosm systems provide the opportunity to carry out such studies with safe handling of contaminants while reproducing natural conditions required by living organisms. The mesocosm design is crucial and can lead to the development of innovative technologies to mitigate environmental impacts. Therefore, this study aimed to develop a mesocosm system for studies simulating oil spills with several key advantages, including true replication and the use of gravity to control flow‐through that reduces reliance on pumps that can clog thereby decreasing errors and costs. This adaptable system can be configured to (a) have continuous flow‐through; (b) operate as an open or closed system; (c) be fed by gravity; (d) have separate mesocosm sections that can be used for individual and simultaneous experiments; and (e) simulate the migration of oil from ocean oil spills to the nearby reefs. The mesocosm performance was assessed with two experiments using the hydrocoral Millepora alcicornis and different configurations to simulate two magnitudes of oil spills. With few exceptions, physical and chemical parameters remained stable within replicates and within treatments throughout the experiments. Physical and chemical parameters that expressed change during the experiment were still within the range of natural conditions observed in Brazilian marine environments. The photosynthetic potential (F(v)/F(m)) of the algae associated with M. alcicornis decreased in response to an 1% crude‐oil contamination, suggesting a successful delivery of the toxic contaminant to the targeted replicates. This mesocosm is customizable and adjustable for several types of experiments and proved to be effective for studies of oil spills.
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spelling pubmed-65093982019-05-20 Adaptable mesocosm facility to study oil spill impacts on corals Silva, Denise P. Duarte, Gustavo Villela, Helena D.M. Santos, Henrique F. Rosado, Phillipe M. Rosado, João Gabriel Rosado, Alexandre S. Ferreira, Edir M. Soriano, Adriana U. Peixoto, Raquel S. Ecol Evol Original Research Although numerous studies have been carried out on the impacts of oil spills on coral physiology, most have relied on laboratory assays. This scarcity is partly explained by the difficulty of reproducing realistic conditions in a laboratory setting or of performing experiments with toxic compounds in the field. Mesocosm systems provide the opportunity to carry out such studies with safe handling of contaminants while reproducing natural conditions required by living organisms. The mesocosm design is crucial and can lead to the development of innovative technologies to mitigate environmental impacts. Therefore, this study aimed to develop a mesocosm system for studies simulating oil spills with several key advantages, including true replication and the use of gravity to control flow‐through that reduces reliance on pumps that can clog thereby decreasing errors and costs. This adaptable system can be configured to (a) have continuous flow‐through; (b) operate as an open or closed system; (c) be fed by gravity; (d) have separate mesocosm sections that can be used for individual and simultaneous experiments; and (e) simulate the migration of oil from ocean oil spills to the nearby reefs. The mesocosm performance was assessed with two experiments using the hydrocoral Millepora alcicornis and different configurations to simulate two magnitudes of oil spills. With few exceptions, physical and chemical parameters remained stable within replicates and within treatments throughout the experiments. Physical and chemical parameters that expressed change during the experiment were still within the range of natural conditions observed in Brazilian marine environments. The photosynthetic potential (F(v)/F(m)) of the algae associated with M. alcicornis decreased in response to an 1% crude‐oil contamination, suggesting a successful delivery of the toxic contaminant to the targeted replicates. This mesocosm is customizable and adjustable for several types of experiments and proved to be effective for studies of oil spills. John Wiley and Sons Inc. 2019-04-17 /pmc/articles/PMC6509398/ /pubmed/31110670 http://dx.doi.org/10.1002/ece3.5095 Text en © 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Silva, Denise P.
Duarte, Gustavo
Villela, Helena D.M.
Santos, Henrique F.
Rosado, Phillipe M.
Rosado, João Gabriel
Rosado, Alexandre S.
Ferreira, Edir M.
Soriano, Adriana U.
Peixoto, Raquel S.
Adaptable mesocosm facility to study oil spill impacts on corals
title Adaptable mesocosm facility to study oil spill impacts on corals
title_full Adaptable mesocosm facility to study oil spill impacts on corals
title_fullStr Adaptable mesocosm facility to study oil spill impacts on corals
title_full_unstemmed Adaptable mesocosm facility to study oil spill impacts on corals
title_short Adaptable mesocosm facility to study oil spill impacts on corals
title_sort adaptable mesocosm facility to study oil spill impacts on corals
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6509398/
https://www.ncbi.nlm.nih.gov/pubmed/31110670
http://dx.doi.org/10.1002/ece3.5095
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