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The future of the northeast Atlantic benthic flora in a high CO2 world.

Identifieur interne : 003637 ( PubMed/Corpus ); précédent : 003636; suivant : 003638

The future of the northeast Atlantic benthic flora in a high CO2 world.

Auteurs : Juliet Brodie ; Christopher J. Williamson ; Dan A. Smale ; Nicholas A. Kamenos ; Nova Mieszkowska ; Rui Santos ; Michael Cunliffe ; Michael Steinke ; Christopher Yesson ; Kathryn M. Anderson ; Valentina Asnaghi ; Colin Brownlee ; Heidi L. Burdett ; Michael T. Burrows ; Sinead Collins ; Penelope J C. Donohue ; Ben Harvey ; Andrew Foggo ; Fanny Noisette ; Joana Nunes ; Federica Ragazzola ; John A. Raven ; Daniela N. Schmidt ; David Suggett ; Mirta Teichberg ; Jason M. Hall-Spencer

Source :

RBID : pubmed:25077027

Abstract

Seaweed and seagrass communities in the northeast Atlantic have been profoundly impacted by humans, and the rate of change is accelerating rapidly due to runaway CO2 emissions and mounting pressures on coastlines associated with human population growth and increased consumption of finite resources. Here, we predict how rapid warming and acidification are likely to affect benthic flora and coastal ecosystems of the northeast Atlantic in this century, based on global evidence from the literature as interpreted by the collective knowledge of the authorship. We predict that warming will kill off kelp forests in the south and that ocean acidification will remove maerl habitat in the north. Seagrasses will proliferate, and associated epiphytes switch from calcified algae to diatoms and filamentous species. Invasive species will thrive in niches liberated by loss of native species and spread via exponential development of artificial marine structures. Combined impacts of seawater warming, ocean acidification, and increased storminess may replace structurally diverse seaweed canopies, with associated calcified and noncalcified flora, with simple habitats dominated by noncalcified, turf-forming seaweeds.

DOI: 10.1002/ece3.1105
PubMed: 25077027

Links to Exploration step

pubmed:25077027

Le document en format XML

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<name sortKey="Santos, Rui" sort="Santos, Rui" uniqKey="Santos R" first="Rui" last="Santos">Rui Santos</name>
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<name sortKey="Yesson, Christopher" sort="Yesson, Christopher" uniqKey="Yesson C" first="Christopher" last="Yesson">Christopher Yesson</name>
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<nlm:affiliation>Department of Life Sciences, The Natural History Museum Cromwell Road, London, SW7 5BD, UK ; Institute of Zoology, Zoological Society of London Regent's Park, London, NW1 4RY, UK.</nlm:affiliation>
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<name sortKey="Anderson, Kathryn M" sort="Anderson, Kathryn M" uniqKey="Anderson K" first="Kathryn M" last="Anderson">Kathryn M. Anderson</name>
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<nlm:affiliation>Department of Zoology, The University of British Columbia #4200-6270 University Blvd., Vancouver, British Columbia, V6T 1Z4, Canada.</nlm:affiliation>
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<name sortKey="Asnaghi, Valentina" sort="Asnaghi, Valentina" uniqKey="Asnaghi V" first="Valentina" last="Asnaghi">Valentina Asnaghi</name>
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<nlm:affiliation>DiSTAV - University of Genoa C.so Europa 26, Genoa, 16132, Italy.</nlm:affiliation>
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<name sortKey="Brownlee, Colin" sort="Brownlee, Colin" uniqKey="Brownlee C" first="Colin" last="Brownlee">Colin Brownlee</name>
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<nlm:affiliation>Marine Biological Association of the UK Citadel Hill, Plymouth, PL1 2PB, UK.</nlm:affiliation>
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<name sortKey="Burdett, Heidi L" sort="Burdett, Heidi L" uniqKey="Burdett H" first="Heidi L" last="Burdett">Heidi L. Burdett</name>
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<nlm:affiliation>Department of Earth and Environmental Sciences, University of St Andrews St Andrews, Fife, KY16 9AL, UK ; Scottish Oceans Institute, University of St Andrews St Andrews, Fife, KY16 8LB, UK.</nlm:affiliation>
</affiliation>
</author>
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<name sortKey="Burrows, Michael T" sort="Burrows, Michael T" uniqKey="Burrows M" first="Michael T" last="Burrows">Michael T. Burrows</name>
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<name sortKey="Collins, Sinead" sort="Collins, Sinead" uniqKey="Collins S" first="Sinead" last="Collins">Sinead Collins</name>
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<name sortKey="Donohue, Penelope J C" sort="Donohue, Penelope J C" uniqKey="Donohue P" first="Penelope J C" last="Donohue">Penelope J C. Donohue</name>
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<name sortKey="Harvey, Ben" sort="Harvey, Ben" uniqKey="Harvey B" first="Ben" last="Harvey">Ben Harvey</name>
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<name sortKey="Foggo, Andrew" sort="Foggo, Andrew" uniqKey="Foggo A" first="Andrew" last="Foggo">Andrew Foggo</name>
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<nlm:affiliation>Marine Biology and Ecology Research Centre, School of Marine Sciences and Engineering, Plymouth University PL4 8AA, UK.</nlm:affiliation>
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<name sortKey="Nunes, Joana" sort="Nunes, Joana" uniqKey="Nunes J" first="Joana" last="Nunes">Joana Nunes</name>
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<nlm:affiliation>Plymouth Marine Laboratory Prospect Place, The Hoe, Plymouth, PL1 3DH, UK.</nlm:affiliation>
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<name sortKey="Ragazzola, Federica" sort="Ragazzola, Federica" uniqKey="Ragazzola F" first="Federica" last="Ragazzola">Federica Ragazzola</name>
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</affiliation>
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</affiliation>
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<div type="abstract" xml:lang="en">Seaweed and seagrass communities in the northeast Atlantic have been profoundly impacted by humans, and the rate of change is accelerating rapidly due to runaway CO2 emissions and mounting pressures on coastlines associated with human population growth and increased consumption of finite resources. Here, we predict how rapid warming and acidification are likely to affect benthic flora and coastal ecosystems of the northeast Atlantic in this century, based on global evidence from the literature as interpreted by the collective knowledge of the authorship. We predict that warming will kill off kelp forests in the south and that ocean acidification will remove maerl habitat in the north. Seagrasses will proliferate, and associated epiphytes switch from calcified algae to diatoms and filamentous species. Invasive species will thrive in niches liberated by loss of native species and spread via exponential development of artificial marine structures. Combined impacts of seawater warming, ocean acidification, and increased storminess may replace structurally diverse seaweed canopies, with associated calcified and noncalcified flora, with simple habitats dominated by noncalcified, turf-forming seaweeds.</div>
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<AbstractText>Seaweed and seagrass communities in the northeast Atlantic have been profoundly impacted by humans, and the rate of change is accelerating rapidly due to runaway CO2 emissions and mounting pressures on coastlines associated with human population growth and increased consumption of finite resources. Here, we predict how rapid warming and acidification are likely to affect benthic flora and coastal ecosystems of the northeast Atlantic in this century, based on global evidence from the literature as interpreted by the collective knowledge of the authorship. We predict that warming will kill off kelp forests in the south and that ocean acidification will remove maerl habitat in the north. Seagrasses will proliferate, and associated epiphytes switch from calcified algae to diatoms and filamentous species. Invasive species will thrive in niches liberated by loss of native species and spread via exponential development of artificial marine structures. Combined impacts of seawater warming, ocean acidification, and increased storminess may replace structurally diverse seaweed canopies, with associated calcified and noncalcified flora, with simple habitats dominated by noncalcified, turf-forming seaweeds.</AbstractText>
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