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The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements

Coral reefs are threatened worldwide, with environmental stressors increasingly affecting the ability of reef-building corals to sustain growth from calcification (G), photosynthesis (P) and respiration (R). These processes support the foundation of coral reefs by directly influencing biogeochemical...

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Autores principales: Camp, Emma F., Krause, Sophie-Louise, Santos, Lourianne M. F., Naumann, Malik S., Kikuchi, Ruy K. P., Smith, David J., Wild, Christian, Suggett, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598020/
https://www.ncbi.nlm.nih.gov/pubmed/26448294
http://dx.doi.org/10.1371/journal.pone.0138800
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author Camp, Emma F.
Krause, Sophie-Louise
Santos, Lourianne M. F.
Naumann, Malik S.
Kikuchi, Ruy K. P.
Smith, David J.
Wild, Christian
Suggett, David J.
author_facet Camp, Emma F.
Krause, Sophie-Louise
Santos, Lourianne M. F.
Naumann, Malik S.
Kikuchi, Ruy K. P.
Smith, David J.
Wild, Christian
Suggett, David J.
author_sort Camp, Emma F.
collection PubMed
description Coral reefs are threatened worldwide, with environmental stressors increasingly affecting the ability of reef-building corals to sustain growth from calcification (G), photosynthesis (P) and respiration (R). These processes support the foundation of coral reefs by directly influencing biogeochemical nutrient cycles and complex ecological interactions and therefore represent key knowledge required for effective reef management. However, metabolic rates are not trivial to quantify and typically rely on the use of cumbersome in situ respirometry chambers and/or the need to remove material and examine ex situ, thereby fundamentally limiting the scale, resolution and possibly the accuracy of the rate data. Here we describe a novel low-cost in situ respirometry bag that mitigates many constraints of traditional glass and plexi-glass incubation chambers. We subsequently demonstrate the effectiveness of our novel “Flexi-Chamber” approach via two case studies: 1) the Flexi-Chamber provides values of P, R and G for the reef-building coral Siderastrea cf. stellata collected from reefs close to Salvador, Brazil, which were statistically similar to values collected from a traditional glass respirometry vessel; and 2) wide-scale application of obtaining P, R and G rates for different species across different habitats to obtain inter- and intra-species differences. Our novel cost-effective design allows us to increase sampling scale of metabolic rate measurements in situ without the need for destructive sampling and thus significantly expands on existing research potential, not only for corals as we have demonstrated here, but also other important benthic groups.
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spelling pubmed-45980202015-10-20 The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements Camp, Emma F. Krause, Sophie-Louise Santos, Lourianne M. F. Naumann, Malik S. Kikuchi, Ruy K. P. Smith, David J. Wild, Christian Suggett, David J. PLoS One Research Article Coral reefs are threatened worldwide, with environmental stressors increasingly affecting the ability of reef-building corals to sustain growth from calcification (G), photosynthesis (P) and respiration (R). These processes support the foundation of coral reefs by directly influencing biogeochemical nutrient cycles and complex ecological interactions and therefore represent key knowledge required for effective reef management. However, metabolic rates are not trivial to quantify and typically rely on the use of cumbersome in situ respirometry chambers and/or the need to remove material and examine ex situ, thereby fundamentally limiting the scale, resolution and possibly the accuracy of the rate data. Here we describe a novel low-cost in situ respirometry bag that mitigates many constraints of traditional glass and plexi-glass incubation chambers. We subsequently demonstrate the effectiveness of our novel “Flexi-Chamber” approach via two case studies: 1) the Flexi-Chamber provides values of P, R and G for the reef-building coral Siderastrea cf. stellata collected from reefs close to Salvador, Brazil, which were statistically similar to values collected from a traditional glass respirometry vessel; and 2) wide-scale application of obtaining P, R and G rates for different species across different habitats to obtain inter- and intra-species differences. Our novel cost-effective design allows us to increase sampling scale of metabolic rate measurements in situ without the need for destructive sampling and thus significantly expands on existing research potential, not only for corals as we have demonstrated here, but also other important benthic groups. Public Library of Science 2015-10-08 /pmc/articles/PMC4598020/ /pubmed/26448294 http://dx.doi.org/10.1371/journal.pone.0138800 Text en © 2015 Camp 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Camp, Emma F.
Krause, Sophie-Louise
Santos, Lourianne M. F.
Naumann, Malik S.
Kikuchi, Ruy K. P.
Smith, David J.
Wild, Christian
Suggett, David J.
The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title_full The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title_fullStr The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title_full_unstemmed The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title_short The “Flexi-Chamber”: A Novel Cost-Effective In Situ Respirometry Chamber for Coral Physiological Measurements
title_sort “flexi-chamber”: a novel cost-effective in situ respirometry chamber for coral physiological measurements
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598020/
https://www.ncbi.nlm.nih.gov/pubmed/26448294
http://dx.doi.org/10.1371/journal.pone.0138800
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