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Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes

A complete understanding of the mechanistic basis of marine ecosystem functioning is only possible through integrative and interdisciplinary research. This enables the prediction of change and possibly the mitigation of the consequences of anthropogenic impacts. One major aim of the European Coopera...

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Autores principales: Mazzuca, Silvia, Björk, M., Beer, S., Felisberto, P., Gobert, S., Procaccini, G., Runcie, J., Silva, J., Borges, A. V., Brunet, C., Buapet, P., Champenois, W., Costa, M. M., D’Esposito, D., Gullström, M., Lejeune, P., Lepoint, G., Olivé, I., Rasmusson, L. M., Richir, J., Ruocco, M., Serra, I. A., Spadafora, A., Santos, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3601598/
https://www.ncbi.nlm.nih.gov/pubmed/23515425
http://dx.doi.org/10.3389/fpls.2013.00038
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author Mazzuca, Silvia
Björk, M.
Beer, S.
Felisberto, P.
Gobert, S.
Procaccini, G.
Runcie, J.
Silva, J.
Borges, A. V.
Brunet, C.
Buapet, P.
Champenois, W.
Costa, M. M.
D’Esposito, D.
Gullström, M.
Lejeune, P.
Lepoint, G.
Olivé, I.
Rasmusson, L. M.
Richir, J.
Ruocco, M.
Serra, I. A.
Spadafora, A.
Santos, Rui
author_facet Mazzuca, Silvia
Björk, M.
Beer, S.
Felisberto, P.
Gobert, S.
Procaccini, G.
Runcie, J.
Silva, J.
Borges, A. V.
Brunet, C.
Buapet, P.
Champenois, W.
Costa, M. M.
D’Esposito, D.
Gullström, M.
Lejeune, P.
Lepoint, G.
Olivé, I.
Rasmusson, L. M.
Richir, J.
Ruocco, M.
Serra, I. A.
Spadafora, A.
Santos, Rui
author_sort Mazzuca, Silvia
collection PubMed
description A complete understanding of the mechanistic basis of marine ecosystem functioning is only possible through integrative and interdisciplinary research. This enables the prediction of change and possibly the mitigation of the consequences of anthropogenic impacts. One major aim of the European Cooperation in Science and Technology (COST) Action ES0609 “Seagrasses productivity. From genes to ecosystem management,” is the calibration and synthesis of various methods and the development of innovative techniques and protocols for studying seagrass ecosystems. During 10 days, 20 researchers representing a range of disciplines (molecular biology, physiology, botany, ecology, oceanography, and underwater acoustics) gathered at The Station de Recherches Sous-marines et Océanographiques (STARESO, Corsica) to study together the nearby Posidonia oceanica meadow. STARESO is located in an oligotrophic area classified as “pristine site” where environmental disturbances caused by anthropogenic pressure are exceptionally low. The healthy P. oceanica meadow, which grows in front of the research station, colonizes the sea bottom from the surface to 37 m depth. During the study, genomic and proteomic approaches were integrated with ecophysiological and physical approaches with the aim of understanding changes in seagrass productivity and metabolism at different depths and along daily cycles. In this paper we report details on the approaches utilized and we forecast the potential of the data that will come from this synergistic approach not only for P. oceanica but for seagrasses in general.
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spelling pubmed-36015982013-03-19 Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes Mazzuca, Silvia Björk, M. Beer, S. Felisberto, P. Gobert, S. Procaccini, G. Runcie, J. Silva, J. Borges, A. V. Brunet, C. Buapet, P. Champenois, W. Costa, M. M. D’Esposito, D. Gullström, M. Lejeune, P. Lepoint, G. Olivé, I. Rasmusson, L. M. Richir, J. Ruocco, M. Serra, I. A. Spadafora, A. Santos, Rui Front Plant Sci Plant Science A complete understanding of the mechanistic basis of marine ecosystem functioning is only possible through integrative and interdisciplinary research. This enables the prediction of change and possibly the mitigation of the consequences of anthropogenic impacts. One major aim of the European Cooperation in Science and Technology (COST) Action ES0609 “Seagrasses productivity. From genes to ecosystem management,” is the calibration and synthesis of various methods and the development of innovative techniques and protocols for studying seagrass ecosystems. During 10 days, 20 researchers representing a range of disciplines (molecular biology, physiology, botany, ecology, oceanography, and underwater acoustics) gathered at The Station de Recherches Sous-marines et Océanographiques (STARESO, Corsica) to study together the nearby Posidonia oceanica meadow. STARESO is located in an oligotrophic area classified as “pristine site” where environmental disturbances caused by anthropogenic pressure are exceptionally low. The healthy P. oceanica meadow, which grows in front of the research station, colonizes the sea bottom from the surface to 37 m depth. During the study, genomic and proteomic approaches were integrated with ecophysiological and physical approaches with the aim of understanding changes in seagrass productivity and metabolism at different depths and along daily cycles. In this paper we report details on the approaches utilized and we forecast the potential of the data that will come from this synergistic approach not only for P. oceanica but for seagrasses in general. Frontiers Media S.A. 2013-03-19 /pmc/articles/PMC3601598/ /pubmed/23515425 http://dx.doi.org/10.3389/fpls.2013.00038 Text en Copyright © 2013 Mazzuca, Björk, Beer, Felisberto, Gobert, Procaccini, Runcie, Silva, Borges, Brunet, Buapet, Champenois, Costa, D’Esposito, Gullström, Lejeune, Lepoint, Olivé, Rasmusson, Richir, Ruocco, Serra, Spadafora and Santos. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and subject to any copyright notices concerning any third-party graphics etc.
spellingShingle Plant Science
Mazzuca, Silvia
Björk, M.
Beer, S.
Felisberto, P.
Gobert, S.
Procaccini, G.
Runcie, J.
Silva, J.
Borges, A. V.
Brunet, C.
Buapet, P.
Champenois, W.
Costa, M. M.
D’Esposito, D.
Gullström, M.
Lejeune, P.
Lepoint, G.
Olivé, I.
Rasmusson, L. M.
Richir, J.
Ruocco, M.
Serra, I. A.
Spadafora, A.
Santos, Rui
Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title_full Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title_fullStr Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title_full_unstemmed Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title_short Establishing Research Strategies, Methodologies and Technologies to Link Genomics and Proteomics to Seagrass Productivity, Community Metabolism, and Ecosystem Carbon Fluxes
title_sort establishing research strategies, methodologies and technologies to link genomics and proteomics to seagrass productivity, community metabolism, and ecosystem carbon fluxes
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3601598/
https://www.ncbi.nlm.nih.gov/pubmed/23515425
http://dx.doi.org/10.3389/fpls.2013.00038
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