ABSTRACT: Over 100 cosmopolitan species of deep-sea benthic foraminifera (Extinction Group, Ext. Gp) became extinct during the late Pliocene-middle Pleistocene (3.6-0.55 Ma). Most had elongate, cylindrical tests and terminal apertures with complex modifications. This study provides new hypotheses on the functions of the morphologies that characterised the Ext. Gp and how these features could have been associated with their demise. From our functional morphological analysis we infer that: i) their elongate cylindrical or flabelliform tests, combined with fine perforations and a complex terminal apertural face are indicative of infaunal k-strategists with a low rate of metabolism; ii) their complex apertural faces may also have been an adapta...
During the late Pliocene-middle Pleistocene, 63 species of elongate, bathyal-upper abyssal benthic f...
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
There is growing evidence that changes in deep-sea benthic ecosystems are modulated by climate chang...
ABSTRACT: Over 100 cosmopolitan species of deep-sea benthic foraminifera (Extinction Group, Ext. Gp)...
In the late Pliocene-middle Pleistocene a group of 95 species of elongate, cylindrical, deep-sea (lo...
The pulsed decline and eventual extinction of 51 species of elongate, cylindrical deep-sea benthic f...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
A group of ~100 species of elongate, cylindrical deep-sea benthic foraminifera (families Stilostomel...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
A group of ∼100 species of elongate, cylindrical deep-sea benthic foraminifera (families Stilostomel...
During the Late Pliocene-Middle Pleistocene, 56 species and 15 genera of elongate, cylindrical benth...
The Earth is currently experiencing rates of environmental change unprecedented in the last 66 milli...
Fifty-eight species of elongate, cylindrical benthic foraminifera (here referred to as the Extinctio...
During the late Pliocene–middle Pleistocene, 63 species of elongate, bathyal–upper abyssal benthic f...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
During the late Pliocene-middle Pleistocene, 63 species of elongate, bathyal-upper abyssal benthic f...
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
There is growing evidence that changes in deep-sea benthic ecosystems are modulated by climate chang...
ABSTRACT: Over 100 cosmopolitan species of deep-sea benthic foraminifera (Extinction Group, Ext. Gp)...
In the late Pliocene-middle Pleistocene a group of 95 species of elongate, cylindrical, deep-sea (lo...
The pulsed decline and eventual extinction of 51 species of elongate, cylindrical deep-sea benthic f...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
A group of ~100 species of elongate, cylindrical deep-sea benthic foraminifera (families Stilostomel...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
A group of ∼100 species of elongate, cylindrical deep-sea benthic foraminifera (families Stilostomel...
During the Late Pliocene-Middle Pleistocene, 56 species and 15 genera of elongate, cylindrical benth...
The Earth is currently experiencing rates of environmental change unprecedented in the last 66 milli...
Fifty-eight species of elongate, cylindrical benthic foraminifera (here referred to as the Extinctio...
During the late Pliocene–middle Pleistocene, 63 species of elongate, bathyal–upper abyssal benthic f...
Understanding the interaction between climate and biotic evolution is crucial for deciphering the se...
During the late Pliocene-middle Pleistocene, 63 species of elongate, bathyal-upper abyssal benthic f...
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
There is growing evidence that changes in deep-sea benthic ecosystems are modulated by climate chang...