Intensification of the meridional temperature gradient in the Great Barrier Reef following the Last Glacial Maximum

Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the growth of the GBR since the Last Glacial Maximum remains largely unknown. Here we present records of Sr/Ca and δ 18 O for Last Glacial Maximum a...

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Published inNature communications Vol. 5; no. 1; p. 4102
Main Authors Felis, Thomas, McGregor, Helen V., Linsley, Braddock K., Tudhope, Alexander W., Gagan, Michael K., Suzuki, Atsushi, Inoue, Mayuri, Thomas, Alexander L., Esat, Tezer M., Thompson, William G., Tiwari, Manish, Potts, Donald C., Mudelsee, Manfred, Yokoyama, Yusuke, Webster, Jody M.
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LanguageEnglish
Published London Nature Publishing Group UK 17.06.2014
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Abstract Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the growth of the GBR since the Last Glacial Maximum remains largely unknown. Here we present records of Sr/Ca and δ 18 O for Last Glacial Maximum and deglacial corals that show a considerably steeper meridional SST gradient than the present day in the central GBR. We find a 1–2 °C larger temperature decrease between 17° and 20°S about 20,000 to 13,000 years ago. The result is best explained by the northward expansion of cooler subtropical waters due to a weakening of the South Pacific gyre and East Australian Current. Our findings indicate that the GBR experienced substantial meridional temperature change during the last deglaciation, and serve to explain anomalous deglacial drying of northeastern Australia. Overall, the GBR developed through significant SST change and may be more resilient than previously thought. The Great Barrier Reef (GBR) is under threat from rising ocean temperatures, yet its response to past temperature change is poorly known. Felis et al . show that the GBR experienced a much steeper temperature gradient during the last deglaciation, suggesting it may be more resilient than previously thought.
AbstractList Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the growth of the GBR since the Last Glacial Maximum remains largely unknown. Here we present records of Sr/Ca and δ18 O for Last Glacial Maximum and deglacial corals that show a considerably steeper meridional SST gradient than the present day in the central GBR. We find a 1-2 °C larger temperature decrease between 17° and 20°S about 20,000 to 13,000 years ago. The result is best explained by the northward expansion of cooler subtropical waters due to a weakening of the South Pacific gyre and East Australian Current. Our findings indicate that the GBR experienced substantial meridional temperature change during the last deglaciation, and serve to explain anomalous deglacial drying of northeastern Australia. Overall, the GBR developed through significant SST change and may be more resilient than previously thought.
Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the growth of the GBR since the Last Glacial Maximum remains largely unknown. Here we present records of Sr/Ca and δ 18 O for Last Glacial Maximum and deglacial corals that show a considerably steeper meridional SST gradient than the present day in the central GBR. We find a 1–2 °C larger temperature decrease between 17° and 20°S about 20,000 to 13,000 years ago. The result is best explained by the northward expansion of cooler subtropical waters due to a weakening of the South Pacific gyre and East Australian Current. Our findings indicate that the GBR experienced substantial meridional temperature change during the last deglaciation, and serve to explain anomalous deglacial drying of northeastern Australia. Overall, the GBR developed through significant SST change and may be more resilient than previously thought. The Great Barrier Reef (GBR) is under threat from rising ocean temperatures, yet its response to past temperature change is poorly known. Felis et al . show that the GBR experienced a much steeper temperature gradient during the last deglaciation, suggesting it may be more resilient than previously thought.
Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the growth of the GBR since the Last Glacial Maximum remains largely unknown. Here we present records of Sr/Ca and δ(18)O for Last Glacial Maximum and deglacial corals that show a considerably steeper meridional SST gradient than the present day in the central GBR. We find a 1-2 °C larger temperature decrease between 17° and 20°S about 20,000 to 13,000 years ago. The result is best explained by the northward expansion of cooler subtropical waters due to a weakening of the South Pacific gyre and East Australian Current. Our findings indicate that the GBR experienced substantial meridional temperature change during the last deglaciation, and serve to explain anomalous deglacial drying of northeastern Australia. Overall, the GBR developed through significant SST change and may be more resilient than previously thought.
ArticleNumber 4102
Author Gagan, Michael K.
Suzuki, Atsushi
Potts, Donald C.
Tudhope, Alexander W.
McGregor, Helen V.
Esat, Tezer M.
Mudelsee, Manfred
Felis, Thomas
Yokoyama, Yusuke
Inoue, Mayuri
Thomas, Alexander L.
Linsley, Braddock K.
Thompson, William G.
Webster, Jody M.
Tiwari, Manish
Author_xml – sequence: 1
  givenname: Thomas
  surname: Felis
  fullname: Felis, Thomas
  email: tfelis@marum.de
  organization: MARUM—Center for Marine Environmental Sciences, University of Bremen
– sequence: 2
  givenname: Helen V.
  surname: McGregor
  fullname: McGregor, Helen V.
  organization: Research School of Earth Sciences, The Australian National University
– sequence: 3
  givenname: Braddock K.
  surname: Linsley
  fullname: Linsley, Braddock K.
  organization: Lamont-Doherty Earth Observatory, Columbia University
– sequence: 4
  givenname: Alexander W.
  surname: Tudhope
  fullname: Tudhope, Alexander W.
  organization: School of GeoSciences, University of Edinburgh
– sequence: 5
  givenname: Michael K.
  surname: Gagan
  fullname: Gagan, Michael K.
  organization: Research School of Earth Sciences, The Australian National University
– sequence: 6
  givenname: Atsushi
  surname: Suzuki
  fullname: Suzuki, Atsushi
  organization: Geological Survey of Japan, National Institute of Advanced Industrial Science and Technology
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  givenname: Mayuri
  surname: Inoue
  fullname: Inoue, Mayuri
  organization: Atmosphere and Ocean Research Institute, The University of Tokyo
– sequence: 8
  givenname: Alexander L.
  surname: Thomas
  fullname: Thomas, Alexander L.
  organization: School of GeoSciences, University of Edinburgh, Department of Earth Sciences, University of Oxford
– sequence: 9
  givenname: Tezer M.
  surname: Esat
  fullname: Esat, Tezer M.
  organization: Research School of Earth Sciences, The Australian National University, Australian Nuclear Science and Technology Organisation, Institute for Environmental Research, Department of Nuclear Physics, Research School of Physical Sciences and Engineering, The Australian National University
– sequence: 10
  givenname: William G.
  surname: Thompson
  fullname: Thompson, William G.
  organization: Department of Geology and Geophysics, Woods Hole Oceanographic Institution
– sequence: 11
  givenname: Manish
  surname: Tiwari
  fullname: Tiwari, Manish
  organization: National Centre for Antarctic & Ocean Research
– sequence: 12
  givenname: Donald C.
  surname: Potts
  fullname: Potts, Donald C.
  organization: Department of Ecology & Evolutionary Biology, University of California
– sequence: 13
  givenname: Manfred
  surname: Mudelsee
  fullname: Mudelsee, Manfred
  organization: Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI), Climate Risk Analysis
– sequence: 14
  givenname: Yusuke
  surname: Yokoyama
  fullname: Yokoyama, Yusuke
  organization: Atmosphere and Ocean Research Institute, The University of Tokyo
– sequence: 15
  givenname: Jody M.
  surname: Webster
  fullname: Webster, Jody M.
  organization: Geocoastal Research Group, School of Geosciences, The University of Sydney
BackLink https://www.ncbi.nlm.nih.gov/pubmed/24937320$$D View this record in MEDLINE/PubMed
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Copyright © 2014, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. 2014 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
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Snippet Tropical south-western Pacific temperatures are of vital importance to the Great Barrier Reef (GBR), but the role of sea surface temperatures (SSTs) in the...
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Title Intensification of the meridional temperature gradient in the Great Barrier Reef following the Last Glacial Maximum
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https://www.ncbi.nlm.nih.gov/pubmed/24937320
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https://pubmed.ncbi.nlm.nih.gov/PMC4082631
Volume 5
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