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Resilience of marine invertebrate communities during the early Cenozoic hyperthermals
by
Muscente, A. D.
, Weiss, Anna M.
, Counts, John W.
, Aberhan, Martin
, Foster, William J.
, Garvie, Christopher L.
, Martindale, Rowan C.
in
704/106/694/2739
/ 704/158/2165
/ Animals
/ Aquatic Organisms - physiology
/ Biodiversity
/ Cenozoic
/ Climate Change
/ Climate effects
/ Coastal plains
/ Cretaceous
/ Ecosystems
/ Environmental conditions
/ Eocene
/ Foraminifera - physiology
/ Fossils
/ Geologic Sediments
/ Global warming
/ High temperature
/ Humanities and Social Sciences
/ Invertebrates
/ Marine ecosystems
/ Marine invertebrates
/ Mass extinctions
/ Mollusca
/ Mollusca - physiology
/ Mollusks
/ multidisciplinary
/ Oceans and Seas
/ Paleocene
/ Science
/ Science (multidisciplinary)
/ Shallow water
/ Shellfish
/ Thermotolerance
2020
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Resilience of marine invertebrate communities during the early Cenozoic hyperthermals
by
Muscente, A. D.
, Weiss, Anna M.
, Counts, John W.
, Aberhan, Martin
, Foster, William J.
, Garvie, Christopher L.
, Martindale, Rowan C.
in
704/106/694/2739
/ 704/158/2165
/ Animals
/ Aquatic Organisms - physiology
/ Biodiversity
/ Cenozoic
/ Climate Change
/ Climate effects
/ Coastal plains
/ Cretaceous
/ Ecosystems
/ Environmental conditions
/ Eocene
/ Foraminifera - physiology
/ Fossils
/ Geologic Sediments
/ Global warming
/ High temperature
/ Humanities and Social Sciences
/ Invertebrates
/ Marine ecosystems
/ Marine invertebrates
/ Mass extinctions
/ Mollusca
/ Mollusca - physiology
/ Mollusks
/ multidisciplinary
/ Oceans and Seas
/ Paleocene
/ Science
/ Science (multidisciplinary)
/ Shallow water
/ Shellfish
/ Thermotolerance
2020
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Resilience of marine invertebrate communities during the early Cenozoic hyperthermals
by
Muscente, A. D.
, Weiss, Anna M.
, Counts, John W.
, Aberhan, Martin
, Foster, William J.
, Garvie, Christopher L.
, Martindale, Rowan C.
in
704/106/694/2739
/ 704/158/2165
/ Animals
/ Aquatic Organisms - physiology
/ Biodiversity
/ Cenozoic
/ Climate Change
/ Climate effects
/ Coastal plains
/ Cretaceous
/ Ecosystems
/ Environmental conditions
/ Eocene
/ Foraminifera - physiology
/ Fossils
/ Geologic Sediments
/ Global warming
/ High temperature
/ Humanities and Social Sciences
/ Invertebrates
/ Marine ecosystems
/ Marine invertebrates
/ Mass extinctions
/ Mollusca
/ Mollusca - physiology
/ Mollusks
/ multidisciplinary
/ Oceans and Seas
/ Paleocene
/ Science
/ Science (multidisciplinary)
/ Shallow water
/ Shellfish
/ Thermotolerance
2020
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Resilience of marine invertebrate communities during the early Cenozoic hyperthermals
Journal Article
Resilience of marine invertebrate communities during the early Cenozoic hyperthermals
2020
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Overview
The hyperthermal events of the Cenozoic, including the Paleocene-Eocene Thermal Maximum, provide an opportunity to investigate the potential effects of climate warming on marine ecosystems. Here, we examine the shallow benthic marine communities preserved in the late Cretaceous to Eocene strata on the Gulf Coastal Plain (United States). In stark contrast to the ecological shifts following the end-Cretaceous mass extinction, our data show that the early Cenozoic hyperthermals did not have a long-term impact on the generic diversity nor composition of the Gulf Coastal Plain molluscan communities. We propose that these communities were resilient to climate change because molluscs are better adapted to high temperatures than other taxa, as demonstrated by their physiology and evolutionary history. In terms of resilience, these communities differ from other shallow-water carbonate ecosystems, such as reef communities, which record significant changes during the early Cenozoic hyperthermals. These data highlight the strikingly different responses of community types, i.e., the almost imperceptible response of molluscs versus the marked turnover of foraminifera and reef faunas. The impact on molluscan communities may have been low because detrimental conditions did not devastate the entire Gulf Coastal Plain, allowing molluscs to rapidly recolonise vacated areas once harsh environmental conditions ameliorated.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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