Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents

Ocean acidification is a major threat for marine life but seagrasses are expected to benefit from high CO2. In situ (long-term) and transplanted (short-term) plant incubations of the seagrass Cymodocea nodosa were performed near and away the influence of volcanic CO2 vents at Vulcano Island to test...

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Published in:Scientific Reports
Main Authors: Olivé, Irene, Silva, João, Lauritano, Chiara, Costa, Monya M., Ruocco, Miriam, Procaccini, Gabriele, Santos, Rui
Format: Article in Journal/Newspaper
Language:English
Published: Nature Research 2017
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Online Access:https://eprints.gla.ac.uk/193183/
https://eprints.gla.ac.uk/193183/1/193183.pdf
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spelling ftuglasgow:oai:eprints.gla.ac.uk:193183 2023-12-17T10:48:01+01:00 Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents Olivé, Irene Silva, João Lauritano, Chiara Costa, Monya M. Ruocco, Miriam Procaccini, Gabriele Santos, Rui 2017-02-13 text https://eprints.gla.ac.uk/193183/ https://eprints.gla.ac.uk/193183/1/193183.pdf en eng Nature Research https://eprints.gla.ac.uk/193183/1/193183.pdf Olivé, I. <http://eprints.gla.ac.uk/view/author/45866.html> , Silva, J., Lauritano, C., Costa, M. M., Ruocco, M., Procaccini, G. and Santos, R. (2017) Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents. Scientific Reports <https://eprints.gla.ac.uk/view/journal_volume/Scientific_Reports.html>, 7, 42278. (doi:10.1038/srep42278 <https://doi.org/10.1038/srep42278>) (PMID:28205566) (PMCID:PMC5304229) cc_by_4 Articles PeerReviewed 2017 ftuglasgow https://doi.org/10.1038/srep42278 2023-11-23T23:09:26Z Ocean acidification is a major threat for marine life but seagrasses are expected to benefit from high CO2. In situ (long-term) and transplanted (short-term) plant incubations of the seagrass Cymodocea nodosa were performed near and away the influence of volcanic CO2 vents at Vulcano Island to test the hypothesis of beneficial effects of CO2 on plant productivity. We relate, for the first time, the expression of photosynthetic, antioxidant and metal detoxification-related genes to net plant productivity (NPP). Results revealed a consistent pattern between gene expression and productivity indicating water origin as the main source of variability. However, the hypothesised beneficial effect of high CO2 around vents was not supported. We observed a consistent long- and short-term pattern of gene down-regulation and 2.5-fold NPP decrease in plants incubated in water from the vents and a generalized up-regulation and NPP increase in plants from the vent site incubated with water from the Reference site. Contrastingly, NPP of specimens experimentally exposed to a CO2 range significantly correlated with CO2 availability. The down-regulation of metal-related genes in C. nodosa leaves exposed to water from the venting site suggests that other factors than heavy metals, may be at play at Vulcano confounding the CO2 effects. Article in Journal/Newspaper Ocean acidification University of Glasgow: Enlighten - Publications Scientific Reports 7 1
institution Open Polar
collection University of Glasgow: Enlighten - Publications
op_collection_id ftuglasgow
language English
description Ocean acidification is a major threat for marine life but seagrasses are expected to benefit from high CO2. In situ (long-term) and transplanted (short-term) plant incubations of the seagrass Cymodocea nodosa were performed near and away the influence of volcanic CO2 vents at Vulcano Island to test the hypothesis of beneficial effects of CO2 on plant productivity. We relate, for the first time, the expression of photosynthetic, antioxidant and metal detoxification-related genes to net plant productivity (NPP). Results revealed a consistent pattern between gene expression and productivity indicating water origin as the main source of variability. However, the hypothesised beneficial effect of high CO2 around vents was not supported. We observed a consistent long- and short-term pattern of gene down-regulation and 2.5-fold NPP decrease in plants incubated in water from the vents and a generalized up-regulation and NPP increase in plants from the vent site incubated with water from the Reference site. Contrastingly, NPP of specimens experimentally exposed to a CO2 range significantly correlated with CO2 availability. The down-regulation of metal-related genes in C. nodosa leaves exposed to water from the venting site suggests that other factors than heavy metals, may be at play at Vulcano confounding the CO2 effects.
format Article in Journal/Newspaper
author Olivé, Irene
Silva, João
Lauritano, Chiara
Costa, Monya M.
Ruocco, Miriam
Procaccini, Gabriele
Santos, Rui
spellingShingle Olivé, Irene
Silva, João
Lauritano, Chiara
Costa, Monya M.
Ruocco, Miriam
Procaccini, Gabriele
Santos, Rui
Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
author_facet Olivé, Irene
Silva, João
Lauritano, Chiara
Costa, Monya M.
Ruocco, Miriam
Procaccini, Gabriele
Santos, Rui
author_sort Olivé, Irene
title Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
title_short Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
title_full Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
title_fullStr Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
title_full_unstemmed Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
title_sort linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to co2 in volcanic vents
publisher Nature Research
publishDate 2017
url https://eprints.gla.ac.uk/193183/
https://eprints.gla.ac.uk/193183/1/193183.pdf
genre Ocean acidification
genre_facet Ocean acidification
op_relation https://eprints.gla.ac.uk/193183/1/193183.pdf
Olivé, I. <http://eprints.gla.ac.uk/view/author/45866.html> , Silva, J., Lauritano, C., Costa, M. M., Ruocco, M., Procaccini, G. and Santos, R. (2017) Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents. Scientific Reports <https://eprints.gla.ac.uk/view/journal_volume/Scientific_Reports.html>, 7, 42278. (doi:10.1038/srep42278 <https://doi.org/10.1038/srep42278>) (PMID:28205566) (PMCID:PMC5304229)
op_rights cc_by_4
op_doi https://doi.org/10.1038/srep42278
container_title Scientific Reports
container_volume 7
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