Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply

Isotopic data from exceptionally well preserved foraminifera show that the subtropical North Atlantic had sea surface temperatures (SSTs) between 30 and 31 °C during the late Albian and early Cenomanian. These temperatures were warmer than average modern temperatures in the tropical western Atlantic...

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Main Authors: Wilson, Paul, Norris, Richard D.
Format: Article in Journal/Newspaper
Language:English
Published: 1998
Subjects:
Online Access:https://eprints.soton.ac.uk/468832/
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spelling ftsouthampton:oai:eprints.soton.ac.uk:468832 2023-07-30T04:05:20+02:00 Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply Wilson, Paul Norris, Richard D. 1998-09-01 https://eprints.soton.ac.uk/468832/ English eng Wilson, Paul and Norris, Richard D. (1998) Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply. Geology, 27 (9), 857-858. (0.1130/0091-7613(1999)027<0857:LLSSTF>2.3.CO;2). Article PeerReviewed 1998 ftsouthampton 2023-07-09T22:54:30Z Isotopic data from exceptionally well preserved foraminifera show that the subtropical North Atlantic had sea surface temperatures (SSTs) between 30 and 31 °C during the late Albian and early Cenomanian. These temperatures were warmer than average modern temperatures in the tropical western Atlantic and support previous inferences based on diagenetically suspect material of Albian tropical SSTs of ∼30 °C. This finding is consistent with basic theories of oceanic thermal response in the tropics to the high atmospheric carbon dioxide levels during the middle-Cretaceous greenhouse. However, our data do not support the concept of a super-Tethyan region of hypersaline waters in the western North Atlantic during late Albian and early Cenomanian time, because seawater salinities substantially higher than modern ones would require significantly higher SSTs than those reported here. Isotopic analysis of mid-Cretaceous planktic foraminifera shows that Planomalina, Ticinella, and Biticinella grew in surface waters and provide isotopic proxies for SST, whereas deeper growing species include Hedbergella, Rotalipora, and Praeglobotruncana. None of these taxa display isotopic indications of photosymbiosis, suggesting that this ecology did not evolve in planktic foraminifera before the Late Cretaceous. Contrary to previous hypotheses, none of these species increased their depth habitat during their life cycles, unlike many extant planktic foraminifera. The rotaliporids may have been preferentially susceptible to extinction during oceanic anoxic events because they lived within or below the thermocline for most of their life cycles. Article in Journal/Newspaper North Atlantic Planktonic foraminifera University of Southampton: e-Prints Soton
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language English
description Isotopic data from exceptionally well preserved foraminifera show that the subtropical North Atlantic had sea surface temperatures (SSTs) between 30 and 31 °C during the late Albian and early Cenomanian. These temperatures were warmer than average modern temperatures in the tropical western Atlantic and support previous inferences based on diagenetically suspect material of Albian tropical SSTs of ∼30 °C. This finding is consistent with basic theories of oceanic thermal response in the tropics to the high atmospheric carbon dioxide levels during the middle-Cretaceous greenhouse. However, our data do not support the concept of a super-Tethyan region of hypersaline waters in the western North Atlantic during late Albian and early Cenomanian time, because seawater salinities substantially higher than modern ones would require significantly higher SSTs than those reported here. Isotopic analysis of mid-Cretaceous planktic foraminifera shows that Planomalina, Ticinella, and Biticinella grew in surface waters and provide isotopic proxies for SST, whereas deeper growing species include Hedbergella, Rotalipora, and Praeglobotruncana. None of these taxa display isotopic indications of photosymbiosis, suggesting that this ecology did not evolve in planktic foraminifera before the Late Cretaceous. Contrary to previous hypotheses, none of these species increased their depth habitat during their life cycles, unlike many extant planktic foraminifera. The rotaliporids may have been preferentially susceptible to extinction during oceanic anoxic events because they lived within or below the thermocline for most of their life cycles.
format Article in Journal/Newspaper
author Wilson, Paul
Norris, Richard D.
spellingShingle Wilson, Paul
Norris, Richard D.
Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
author_facet Wilson, Paul
Norris, Richard D.
author_sort Wilson, Paul
title Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
title_short Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
title_full Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
title_fullStr Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
title_full_unstemmed Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply
title_sort low-latitude sea-surface temperatures for the mid-cretaceous and the evolution of planktonic foraminifera: comment and reply
publishDate 1998
url https://eprints.soton.ac.uk/468832/
genre North Atlantic
Planktonic foraminifera
genre_facet North Atlantic
Planktonic foraminifera
op_relation Wilson, Paul and Norris, Richard D. (1998) Low-latitude sea-surface temperatures for the mid-Cretaceous and the evolution of planktonic foraminifera: Comment and reply. Geology, 27 (9), 857-858. (0.1130/0091-7613(1999)027<0857:LLSSTF>2.3.CO;2).
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