Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef

Crustose coralline algae (CCA) play a central role in tropical reef ecology, helping to build and stabilise the reef framework and, due to their high Mg-calcite skeleton, are potential indicators for assessing the impacts of ocean acidification. However, basic information on CCA seasonal growth and...

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Published in:Marine Ecology Progress Series
Main Authors: Lewis, Bonnie, Kennedy, Emma V., Diaz-Pulido, Guillermo
Format: Article in Journal/Newspaper
Language:unknown
Published: Inter Research 2017
Subjects:
Online Access:http://eprints.gla.ac.uk/149072/
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spelling ftuglasgow:oai:eprints.gla.ac.uk:149072 2023-05-15T17:50:45+02:00 Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef Lewis, Bonnie Kennedy, Emma V. Diaz-Pulido, Guillermo 2017 http://eprints.gla.ac.uk/149072/ unknown Inter Research Lewis, B. <http://eprints.gla.ac.uk/view/author/39622.html>, Kennedy, E. V. and Diaz-Pulido, G. (2017) Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef. Marine Ecology Progress Series <http://eprints.gla.ac.uk/view/journal_volume/Marine_Ecology_Progress_Series.html>, 568, pp. 73-86. (doi:10.3354/meps12074 <http://dx.doi.org/10.3354/meps12074>) Articles PeerReviewed 2017 ftuglasgow https://doi.org/10.3354/meps12074 2020-01-10T01:29:52Z Crustose coralline algae (CCA) play a central role in tropical reef ecology, helping to build and stabilise the reef framework and, due to their high Mg-calcite skeleton, are potential indicators for assessing the impacts of ocean acidification. However, basic information on CCA seasonal growth and calcification is relatively unknown on the Great Barrier Reef (GBR). This study provides seasonal baseline rates of vertical growth, marginal (horizontal) growth and calcification of the abundant CCA species Porolithon onkodes, together with the effect of reduced irradiance on these metrics to better understand the natural variability between CCA living in exposed and shaded areas. Seasonal variation was detected in each of the metrics, with maximum vertical growth and calcification observed in spring and marginal extension in autumn. Annual vertical growth rate was 1.45 mm yr-1, absolute marginal growth rate (surface area) was 11.12 cm2 yr-1, and absolute marginal extension rate (diameter) was 24.66 mm yr-1. Net calcification, determined using the buoyant weight method (includes secondary calcification deposits) was approximately 2.72 to 3.40 g CaCO3 cm-2 yr-1, while gross calcification determined using growth metrics (just newly deposited CaCO3) was 0.43 to 0.59 g CaCO3 cm-2 yr-1. Shaded treatments yielded higher growth and gross calcification rates compared to exposed in all seasons except summer. This data provides empirical information necessary to monitor the impacts of future climate change on the GBR and to better understand the response of CCA to manipulative experiments on ocean acidification and warming. Article in Journal/Newspaper Ocean acidification University of Glasgow: Enlighten - Publications Marine Ecology Progress Series 568 73 86
institution Open Polar
collection University of Glasgow: Enlighten - Publications
op_collection_id ftuglasgow
language unknown
description Crustose coralline algae (CCA) play a central role in tropical reef ecology, helping to build and stabilise the reef framework and, due to their high Mg-calcite skeleton, are potential indicators for assessing the impacts of ocean acidification. However, basic information on CCA seasonal growth and calcification is relatively unknown on the Great Barrier Reef (GBR). This study provides seasonal baseline rates of vertical growth, marginal (horizontal) growth and calcification of the abundant CCA species Porolithon onkodes, together with the effect of reduced irradiance on these metrics to better understand the natural variability between CCA living in exposed and shaded areas. Seasonal variation was detected in each of the metrics, with maximum vertical growth and calcification observed in spring and marginal extension in autumn. Annual vertical growth rate was 1.45 mm yr-1, absolute marginal growth rate (surface area) was 11.12 cm2 yr-1, and absolute marginal extension rate (diameter) was 24.66 mm yr-1. Net calcification, determined using the buoyant weight method (includes secondary calcification deposits) was approximately 2.72 to 3.40 g CaCO3 cm-2 yr-1, while gross calcification determined using growth metrics (just newly deposited CaCO3) was 0.43 to 0.59 g CaCO3 cm-2 yr-1. Shaded treatments yielded higher growth and gross calcification rates compared to exposed in all seasons except summer. This data provides empirical information necessary to monitor the impacts of future climate change on the GBR and to better understand the response of CCA to manipulative experiments on ocean acidification and warming.
format Article in Journal/Newspaper
author Lewis, Bonnie
Kennedy, Emma V.
Diaz-Pulido, Guillermo
spellingShingle Lewis, Bonnie
Kennedy, Emma V.
Diaz-Pulido, Guillermo
Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
author_facet Lewis, Bonnie
Kennedy, Emma V.
Diaz-Pulido, Guillermo
author_sort Lewis, Bonnie
title Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
title_short Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
title_full Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
title_fullStr Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
title_full_unstemmed Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef
title_sort seasonal growth and calcification of a reef-building crustose coralline alga on the great barrier reef
publisher Inter Research
publishDate 2017
url http://eprints.gla.ac.uk/149072/
genre Ocean acidification
genre_facet Ocean acidification
op_relation Lewis, B. <http://eprints.gla.ac.uk/view/author/39622.html>, Kennedy, E. V. and Diaz-Pulido, G. (2017) Seasonal growth and calcification of a reef-building crustose coralline alga on the Great Barrier Reef. Marine Ecology Progress Series <http://eprints.gla.ac.uk/view/journal_volume/Marine_Ecology_Progress_Series.html>, 568, pp. 73-86. (doi:10.3354/meps12074 <http://dx.doi.org/10.3354/meps12074>)
op_doi https://doi.org/10.3354/meps12074
container_title Marine Ecology Progress Series
container_volume 568
container_start_page 73
op_container_end_page 86
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