Combined effects of ocean acidification and metals on sea urchin and oyster larval development

We live in a multi-stressor world where oceans are impacted by both global (e.g. CO 2 -driven climate change and ocean acidification) and local pressures. Coastal marine organisms are already challenged by anthropogenic stressors such as pollutants, that may magnify the impacts of future global chan...

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Main Authors: Dorey, Narimane, Maboloc, Elizaldy Acebu, Chan, Kit Yu Karen
Format: Conference Object
Language:English
Published: 2016
Subjects:
Online Access:http://repository.ust.hk/ir/Record/1783.1-77652
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spelling ftunivsthongkong:oai:repository.ust.hk:1783.1-77652 2023-05-15T17:49:03+02:00 Combined effects of ocean acidification and metals on sea urchin and oyster larval development Dorey, Narimane Maboloc, Elizaldy Acebu Chan, Kit Yu Karen 2016 http://repository.ust.hk/ir/Record/1783.1-77652 http://lbdiscover.ust.hk/uresolver?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rfr_id=info:sid/HKUST:SPI&rft.genre=article&rft.issn=nil&rft.volume=&rft.issue=&rft.date=2016&rft.spage=91&rft.aulast=Dorey&rft.aufirst=Narimane%7C015772&rft.atitle=Combined+effects+of+ocean+acidification+and+metals+on+sea+urchin+and+oyster+larval+development&rft.title=4th+International+Symposium+on+the+Ocean+in+a+High-CO2+World,+Hobart,+Tasmania,+Australia English eng http://repository.ust.hk/ir/Record/1783.1-77652 4th International Symposium on the Ocean in a High-CO2 World, Hobart, Tasmania, Australia, 3-6 May 2016 http://lbdiscover.ust.hk/uresolver?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rfr_id=info:sid/HKUST:SPI&rft.genre=article&rft.issn=nil&rft.volume=&rft.issue=&rft.date=2016&rft.spage=91&rft.aulast=Dorey&rft.aufirst=Narimane%7C015772&rft.atitle=Combined+effects+of+ocean+acidification+and+metals+on+sea+urchin+and+oyster+larval+development&rft.title=4th+International+Symposium+on+the+Ocean+in+a+High-CO2+World,+Hobart,+Tasmania,+Australia Conference paper 2016 ftunivsthongkong 2019-09-03T18:21:36Z We live in a multi-stressor world where oceans are impacted by both global (e.g. CO 2 -driven climate change and ocean acidification) and local pressures. Coastal marine organisms are already challenged by anthropogenic stressors such as pollutants, that may magnify the impacts of future global changes. For instance, ocean acidification is likely to change metal speciation as well as bioaccumulation and, consequently, metal toxicity. There is few information available on the effects of these interactions on marine biota. In this study, we provide insight on the combined effects of ocean acidification and copper on the larval development of the sea urchin Heliocidaris crassispina and the oyster Crassostrea hongkongensis. In laboratory culture, sea urchin larvae appeared quite robust to predicted pH changes as well as to high levels of copper contamination, albeit some morphometric changes. The association of both stressors significantly increased larval mortality, anomalies and respiration. We still lack an understanding of how biological mechanisms respond to co-occurring factors such as metal contamination and ocean acidification, making accurate projections regarding the future of ecologically- and economically- important marine ecosystems difficult. Conference Object Ocean acidification The Hong Kong University of Science and Technology: HKUST Institutional Repository
institution Open Polar
collection The Hong Kong University of Science and Technology: HKUST Institutional Repository
op_collection_id ftunivsthongkong
language English
description We live in a multi-stressor world where oceans are impacted by both global (e.g. CO 2 -driven climate change and ocean acidification) and local pressures. Coastal marine organisms are already challenged by anthropogenic stressors such as pollutants, that may magnify the impacts of future global changes. For instance, ocean acidification is likely to change metal speciation as well as bioaccumulation and, consequently, metal toxicity. There is few information available on the effects of these interactions on marine biota. In this study, we provide insight on the combined effects of ocean acidification and copper on the larval development of the sea urchin Heliocidaris crassispina and the oyster Crassostrea hongkongensis. In laboratory culture, sea urchin larvae appeared quite robust to predicted pH changes as well as to high levels of copper contamination, albeit some morphometric changes. The association of both stressors significantly increased larval mortality, anomalies and respiration. We still lack an understanding of how biological mechanisms respond to co-occurring factors such as metal contamination and ocean acidification, making accurate projections regarding the future of ecologically- and economically- important marine ecosystems difficult.
format Conference Object
author Dorey, Narimane
Maboloc, Elizaldy Acebu
Chan, Kit Yu Karen
spellingShingle Dorey, Narimane
Maboloc, Elizaldy Acebu
Chan, Kit Yu Karen
Combined effects of ocean acidification and metals on sea urchin and oyster larval development
author_facet Dorey, Narimane
Maboloc, Elizaldy Acebu
Chan, Kit Yu Karen
author_sort Dorey, Narimane
title Combined effects of ocean acidification and metals on sea urchin and oyster larval development
title_short Combined effects of ocean acidification and metals on sea urchin and oyster larval development
title_full Combined effects of ocean acidification and metals on sea urchin and oyster larval development
title_fullStr Combined effects of ocean acidification and metals on sea urchin and oyster larval development
title_full_unstemmed Combined effects of ocean acidification and metals on sea urchin and oyster larval development
title_sort combined effects of ocean acidification and metals on sea urchin and oyster larval development
publishDate 2016
url http://repository.ust.hk/ir/Record/1783.1-77652
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genre Ocean acidification
genre_facet Ocean acidification
op_relation http://repository.ust.hk/ir/Record/1783.1-77652
4th International Symposium on the Ocean in a High-CO2 World, Hobart, Tasmania, Australia, 3-6 May 2016
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