Benthic foraminifera extinctions in the Cenozoic record

Fuente: PANGAEA
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Hayward, Bruce William, Johnson, Katherine, Sabaa, Ashwaq T, Kawagata, Shungo, Thomas, Ellen
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2010
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1867169504897794048
author Hayward, Bruce William
Johnson, Katherine
Sabaa, Ashwaq T
Kawagata, Shungo
Thomas, Ellen
author_facet Hayward, Bruce William
Johnson, Katherine
Sabaa, Ashwaq T
Kawagata, Shungo
Thomas, Ellen
collection Datos científicos de ciencias marinas y ambientales
contents In the late Pliocene-middle Pleistocene a group of 95 species of elongate, cylindrical, deep-sea (lower bathyal-abyssal) benthic foraminifera became extinct. This Extinction Group (Ext. Gp), belonging to three families (all the Stilostomellidae and Pleurostomellidae, some of the Nodosariidae), was a major component (20-70%) of deep-sea foraminiferal assemblages in the middle Cenozoic and subsequently declined in abundance and species richness before finally disappearing almost completely during the mid-Pleistocene Climatic Transition (MPT). So what caused these declines and extinction? In this study 127 Ext. Gp species are identified from eight Cenozoic bathyal and abyssal sequences in the North Atlantic and equatorial Pacific Oceans. Most species are long-ranging with 80% originating in the Eocene or earlier. The greatest abundance and diversity of the Ext. Gp was in the warm oceanic conditions of the middle Eocene-early Oligocene. The group was subjected to significant changes in the composition of the faunal dominants and slightly enhanced species turnover during and soon after the rapid Eocene-Oligocene cooling event. Declines in the relative abundance and flux of the Ext. Gp, together with enhanced species loss, occurred during middle-late Miocene cooling, particularly at abyssal sites. The overall number of Ext. Gp species present began declining earlier at mid abyssal depths (in middle Miocene) than at upper abyssal (in late Pliocene-early Pleistocene) and then lower bathyal depths (in MPT). By far the most significant Ext. Gp declines in abundance and species loss occurred during the more severe glacial stages of the late Pliocene-middle Pleistocene. Clearly, the decline and extinction of this group of deep-sea foraminifera was related to the function of their specialized apertures and the stepwise cooling of global climate and deep water. We infer that the apertural modifications may be related to the method of food collection or processing, and that the extinctions may have resulted from the decline or loss of their specific phytoplankton or prokaryote food source, that was more directly impacted than the foraminifera by the cooling temperatures.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_774877
institution PANGAEA
language en
publishDate 2010
publisher PANGAEA
record_format pangaea
spellingShingle Benthic foraminifera extinctions in the Cenozoic record
Hayward, Bruce William
Johnson, Katherine
Sabaa, Ashwaq T
Kawagata, Shungo
Thomas, Ellen
143-865B; 162-980; 162-982; 167-1012; 167-1012B; 172-1055B; 33-317B; 80-548; 80-548A; 94-608; Carolina Slope, North Atlantic Ocean; COMPCORE; Composite Core; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Joides Resolution; KR9912PC4; Leg143; Leg162; Leg167; Leg172; Leg33; Leg80; Leg94; North Atlantic/FLANK; North Atlantic/SPUR; North Atlantic Ocean; North Pacific Ocean; Ocean Drilling Program; ODP; South Pacific/PLATEAU; South Pacific Ocean
In the late Pliocene-middle Pleistocene a group of 95 species of elongate, cylindrical, deep-sea (lower bathyal-abyssal) benthic foraminifera became extinct. This Extinction Group (Ext. Gp), belonging to three families (all the Stilostomellidae and Pleurostomellidae, some of the Nodosariidae), was a major component (20-70%) of deep-sea foraminiferal assemblages in the middle Cenozoic and subsequently declined in abundance and species richness before finally disappearing almost completely during the mid-Pleistocene Climatic Transition (MPT). So what caused these declines and extinction? In this study 127 Ext. Gp species are identified from eight Cenozoic bathyal and abyssal sequences in the North Atlantic and equatorial Pacific Oceans. Most species are long-ranging with 80% originating in the Eocene or earlier. The greatest abundance and diversity of the Ext. Gp was in the warm oceanic conditions of the middle Eocene-early Oligocene. The group was subjected to significant changes in the composition of the faunal dominants and slightly enhanced species turnover during and soon after the rapid Eocene-Oligocene cooling event. Declines in the relative abundance and flux of the Ext. Gp, together with enhanced species loss, occurred during middle-late Miocene cooling, particularly at abyssal sites. The overall number of Ext. Gp species present began declining earlier at mid abyssal depths (in middle Miocene) than at upper abyssal (in late Pliocene-early Pleistocene) and then lower bathyal depths (in MPT). By far the most significant Ext. Gp declines in abundance and species loss occurred during the more severe glacial stages of the late Pliocene-middle Pleistocene. Clearly, the decline and extinction of this group of deep-sea foraminifera was related to the function of their specialized apertures and the stepwise cooling of global climate and deep water. We infer that the apertural modifications may be related to the method of food collection or processing, and that the extinctions may have resulted from the decline or loss of their specific phytoplankton or prokaryote food source, that was more directly impacted than the foraminifera by the cooling temperatures.
title Benthic foraminifera extinctions in the Cenozoic record
topic 143-865B; 162-980; 162-982; 167-1012; 167-1012B; 172-1055B; 33-317B; 80-548; 80-548A; 94-608; Carolina Slope, North Atlantic Ocean; COMPCORE; Composite Core; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Joides Resolution; KR9912PC4; Leg143; Leg162; Leg167; Leg172; Leg33; Leg80; Leg94; North Atlantic/FLANK; North Atlantic/SPUR; North Atlantic Ocean; North Pacific Ocean; Ocean Drilling Program; ODP; South Pacific/PLATEAU; South Pacific Ocean
url https://doi.org/10.1594/PANGAEA.774877