Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic

Late Cenozoic bivalve extinction in the North Atlantic and adjacent areas has been attributed to environmental change (declines in temperature and primary production). Within scallops and oysters—bivalve groups with a high growth rate—certain taxa which grew exceptionally fast became extinct, while...

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Published in:Historical Biology
Main Authors: Johnson, Andrew L. A., Harper, Elizabeth M., Clarke, Abigail, Featherstone, Aaron C., Heywood, Daniel J., Richardson, Kathryn E., Spink, Jack O., Thornton, Luke A.H.
Other Authors: University of Derby
Format: Article in Journal/Newspaper
Language:unknown
Published: Taylor & Francis 2019
Subjects:
Online Access:https://doi.org/10.1080/08912963.2019.1663839
https://doi.org/10292381
https://repository.derby.ac.uk/download/ab044a4cadbd499552a26ad0ab8a241fd38197db21e666f11ad3bb4d4cafcd28/1748/license.txt
https://repository.derby.ac.uk/download/dd0d74cc9a5699ab23ecb60e4fa1781bdeaa0ca268a8c1a80b2e8365ddabc61b/2168788/Johnson%20et%20al.%20Hist.%20Biol.%20accepted.pdf
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spelling ftunivderby:oai:repository.derby.ac.uk:9379z 2023-06-11T04:14:24+02:00 Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic Johnson, Andrew L. A. Harper, Elizabeth M. Clarke, Abigail Featherstone, Aaron C. Heywood, Daniel J. Richardson, Kathryn E. Spink, Jack O. Thornton, Luke A.H. University of Derby 2019 application/octet-stream application/pdf https://doi.org/10.1080/08912963.2019.1663839 https://doi.org/10292381 https://repository.derby.ac.uk/download/ab044a4cadbd499552a26ad0ab8a241fd38197db21e666f11ad3bb4d4cafcd28/1748/license.txt https://repository.derby.ac.uk/download/dd0d74cc9a5699ab23ecb60e4fa1781bdeaa0ca268a8c1a80b2e8365ddabc61b/2168788/Johnson%20et%20al.%20Hist.%20Biol.%20accepted.pdf unknown Taylor & Francis https://repository.derby.ac.uk/item/9379z/growth-rate-extinction-and-survival-amongst-late-cenozoic-bivalves-of-the-north-atlantic ISSN:08912963 https://repository.derby.ac.uk/download/ab044a4cadbd499552a26ad0ab8a241fd38197db21e666f11ad3bb4d4cafcd28/1748/license.txt https://repository.derby.ac.uk/download/dd0d74cc9a5699ab23ecb60e4fa1781bdeaa0ca268a8c1a80b2e8365ddabc61b/2168788/Johnson%20et%20al.%20Hist.%20Biol.%20accepted.pdf https://doi.org/10.1080/08912963.2019.1663839 https://doi.org/10292381 Johnson, Andrew L. A., Harper, Elizabeth M., Clarke, Abigail, Featherstone, Aaron C., Heywood, Daniel J., Richardson, Kathryn E., Spink, Jack O. and Thornton, Luke A.H. 2019. Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic. Historical Biology. https://doi.org/10.1080/08912963.2019.1663839 growth rate extinction Glycymeris cardites late cenozoic North Atlantic journal-article 2019 ftunivderby https://doi.org/10.1080/08912963.2019.1663839 2023-05-08T13:33:07Z Late Cenozoic bivalve extinction in the North Atlantic and adjacent areas has been attributed to environmental change (declines in temperature and primary production). Within scallops and oysters—bivalve groups with a high growth rate—certain taxa which grew exceptionally fast became extinct, while others which grew slower survived. The taxa which grew exceptionally fast would have obtained protection from predators thereby, so their extinction may have been due to the detrimental effect of environmental change on growth rate and ability to avoid predation, rather than environmental change per se. We investigated some glycymeridid and carditid bivalves—groups with a much lower growth rate than scallops and oysters—to see whether extinct forms from the late Cenozoic of the North Atlantic grew faster than extant forms, and hence whether their extinction may also have been mediated by increased mortality due to predation. Growth rate was determined from the cumulative width of annual increments in the hinge area; measurements were scaled up to overall shell size for the purposes of comparison with data from living species. Growth of the extinct glycymeridid Glycymeris subovata was at about the same rate as the slowest-growing living glycymeridid and much slower than in late Cenozoic samples of extant G. americana, in which growth was at about the same rate as the fastest-growing living glycymeridid. Growth of extinct G. obovata was also slower than G. americana, and that of the extinct carditid Cardites squamulosa ampla similarly slow (evidently slower than in the one living carditid species for which data are available). These findings indicate that within bivalve groups whose growth is much slower than scallops and oysters, extinction or survival of taxa through the late Cenozoic was not influenced by whether they were relatively fast or slow growers. By implication, environmental change acted directly to cause extinctions in slow-growing groups, rather than by increasing susceptibility to predation. Article in Journal/Newspaper North Atlantic UDORA - The University of Derby Online Research Archive Historical Biology 33 6 802 813
institution Open Polar
collection UDORA - The University of Derby Online Research Archive
op_collection_id ftunivderby
language unknown
topic growth rate
extinction
Glycymeris
cardites
late cenozoic
North Atlantic
spellingShingle growth rate
extinction
Glycymeris
cardites
late cenozoic
North Atlantic
Johnson, Andrew L. A.
Harper, Elizabeth M.
Clarke, Abigail
Featherstone, Aaron C.
Heywood, Daniel J.
Richardson, Kathryn E.
Spink, Jack O.
Thornton, Luke A.H.
Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
topic_facet growth rate
extinction
Glycymeris
cardites
late cenozoic
North Atlantic
description Late Cenozoic bivalve extinction in the North Atlantic and adjacent areas has been attributed to environmental change (declines in temperature and primary production). Within scallops and oysters—bivalve groups with a high growth rate—certain taxa which grew exceptionally fast became extinct, while others which grew slower survived. The taxa which grew exceptionally fast would have obtained protection from predators thereby, so their extinction may have been due to the detrimental effect of environmental change on growth rate and ability to avoid predation, rather than environmental change per se. We investigated some glycymeridid and carditid bivalves—groups with a much lower growth rate than scallops and oysters—to see whether extinct forms from the late Cenozoic of the North Atlantic grew faster than extant forms, and hence whether their extinction may also have been mediated by increased mortality due to predation. Growth rate was determined from the cumulative width of annual increments in the hinge area; measurements were scaled up to overall shell size for the purposes of comparison with data from living species. Growth of the extinct glycymeridid Glycymeris subovata was at about the same rate as the slowest-growing living glycymeridid and much slower than in late Cenozoic samples of extant G. americana, in which growth was at about the same rate as the fastest-growing living glycymeridid. Growth of extinct G. obovata was also slower than G. americana, and that of the extinct carditid Cardites squamulosa ampla similarly slow (evidently slower than in the one living carditid species for which data are available). These findings indicate that within bivalve groups whose growth is much slower than scallops and oysters, extinction or survival of taxa through the late Cenozoic was not influenced by whether they were relatively fast or slow growers. By implication, environmental change acted directly to cause extinctions in slow-growing groups, rather than by increasing susceptibility to predation.
author2 University of Derby
format Article in Journal/Newspaper
author Johnson, Andrew L. A.
Harper, Elizabeth M.
Clarke, Abigail
Featherstone, Aaron C.
Heywood, Daniel J.
Richardson, Kathryn E.
Spink, Jack O.
Thornton, Luke A.H.
author_facet Johnson, Andrew L. A.
Harper, Elizabeth M.
Clarke, Abigail
Featherstone, Aaron C.
Heywood, Daniel J.
Richardson, Kathryn E.
Spink, Jack O.
Thornton, Luke A.H.
author_sort Johnson, Andrew L. A.
title Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
title_short Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
title_full Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
title_fullStr Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
title_full_unstemmed Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic
title_sort growth rate, extinction and survival amongst late cenozoic bivalves of the north atlantic
publisher Taylor & Francis
publishDate 2019
url https://doi.org/10.1080/08912963.2019.1663839
https://doi.org/10292381
https://repository.derby.ac.uk/download/ab044a4cadbd499552a26ad0ab8a241fd38197db21e666f11ad3bb4d4cafcd28/1748/license.txt
https://repository.derby.ac.uk/download/dd0d74cc9a5699ab23ecb60e4fa1781bdeaa0ca268a8c1a80b2e8365ddabc61b/2168788/Johnson%20et%20al.%20Hist.%20Biol.%20accepted.pdf
genre North Atlantic
genre_facet North Atlantic
op_relation https://repository.derby.ac.uk/item/9379z/growth-rate-extinction-and-survival-amongst-late-cenozoic-bivalves-of-the-north-atlantic
ISSN:08912963
https://repository.derby.ac.uk/download/ab044a4cadbd499552a26ad0ab8a241fd38197db21e666f11ad3bb4d4cafcd28/1748/license.txt
https://repository.derby.ac.uk/download/dd0d74cc9a5699ab23ecb60e4fa1781bdeaa0ca268a8c1a80b2e8365ddabc61b/2168788/Johnson%20et%20al.%20Hist.%20Biol.%20accepted.pdf
https://doi.org/10.1080/08912963.2019.1663839
https://doi.org/10292381
Johnson, Andrew L. A., Harper, Elizabeth M., Clarke, Abigail, Featherstone, Aaron C., Heywood, Daniel J., Richardson, Kathryn E., Spink, Jack O. and Thornton, Luke A.H. 2019. Growth rate, extinction and survival amongst late Cenozoic bivalves of the North Atlantic. Historical Biology. https://doi.org/10.1080/08912963.2019.1663839
op_doi https://doi.org/10.1080/08912963.2019.1663839
container_title Historical Biology
container_volume 33
container_issue 6
container_start_page 802
op_container_end_page 813
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