Literature DB >> 18663220

Poorly cemented coral reefs of the eastern tropical Pacific: possible insights into reef development in a high-CO2 world.

Derek P Manzello1, Joan A Kleypas, David A Budd, C Mark Eakin, Peter W Glynn, Chris Langdon.   

Abstract

Ocean acidification describes the progressive, global reduction in seawater pH that is currently underway because of the accelerating oceanic uptake of atmospheric CO(2). Acidification is expected to reduce coral reef calcification and increase reef dissolution. Inorganic cementation in reefs describes the precipitation of CaCO(3) that acts to bind framework components and occlude porosity. Little is known about the effects of ocean acidification on reef cementation and whether changes in cementation rates will affect reef resistance to erosion. Coral reefs of the eastern tropical Pacific (ETP) are poorly developed and subject to rapid bioerosion. Upwelling processes mix cool, subthermocline waters with elevated pCO(2) (the partial pressure of CO(2)) and nutrients into the surface layers throughout the ETP. Concerns about ocean acidification have led to the suggestion that this region of naturally low pH waters may serve as a model of coral reef development in a high-CO(2) world. We analyzed seawater chemistry and reef framework samples from multiple reef sites in the ETP and found that a low carbonate saturation state (Omega) and trace abundances of cement are characteristic of these reefs. These low cement abundances may be a factor in the high bioerosion rates previously reported for ETP reefs, although elevated nutrients in upwelled waters may also be limiting cementation and/or stimulating bioerosion. ETP reefs represent a real-world example of coral reef growth in low-Omega waters that provide insights into how the biological-geological interface of coral reef ecosystems will change in a high-CO(2) world.

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Year:  2008        PMID: 18663220      PMCID: PMC2492517          DOI: 10.1073/pnas.0712167105

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  9 in total

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3.  Calcium carbonate formation and dissolution.

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4.  The marine inorganic carbon cycle.

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5.  Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms.

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Journal:  Nature       Date:  2005-09-29       Impact factor: 49.962

6.  Geochemical consequences of increased atmospheric carbon dioxide on coral reefs

Authors: 
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8.  The oceanic sink for anthropogenic CO2.

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Journal:  Science       Date:  2004-07-16       Impact factor: 47.728

9.  Impact of anthropogenic CO2 on the CaCO3 system in the oceans.

Authors:  Richard A Feely; Christopher L Sabine; Kitack Lee; Will Berelson; Joanie Kleypas; Victoria J Fabry; Frank J Millero
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  9 in total
  35 in total

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3.  Long-term effects of warming and ocean acidification are modified by seasonal variation in species responses and environmental conditions.

Authors:  Jasmin A Godbold; Martin Solan
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Journal:  F1000 Biol Rep       Date:  2009-05-08

7.  Ocean acidification accelerates reef bioerosion.

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