There is a growing evidence that changes in deep-sea benthic ecosystems are modulated by climate changes, but most evidence to date comes from the North Atlantic Ocean. Here we analyze new ostracod and published foraminiferal records for the last 250,000 years on Shatsky Rise in the North Pacific Ocean. Using linear models, we evaluate statistically the ability of environmental drivers (temperature, productivity, and seasonality of productivity) to predict changes in faunal diversity, abundance and composition. These microfossil data show glacial-interglacial shifts in overall abundances and species diversities that are low during glacial intervals and high during interglacials. These patterns replicate those previously documented in the No...
Deep-sea benthic ostracod assemblages covering the last two million years were investigated in IODP ...
Release of methane from large marine reservoirs has been linked to climate change, as a causal mecha...
Tropical climate is variable on astronomical time scale, driving changes in surface and deep-sea fau...
There is a growing evidence that changes in deep-sea benthic ecosystems are modulated by climate cha...
There is a growing evidence that changes in deep-sea benthic ecosystems are modulated by climate cha...
There is growing evidence that changes in deep-sea benthic ecosystems are modulated by climate chang...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ov...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ov...
Anthropogenic climate change is altering global biogeographical patterns. However, it remains diffic...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ...
Traditionally, deep-sea ecosystems have been considered to be insulated from the effects of modern c...
Traditionally, deep-sea ecosystems have been considered to be insulated from the effects of modern c...
Within-habitat (α) diversity of living benthic foraminifera in the Atlantic Basin increases as latit...
We investigated the deep-sea fossil record of benthic ostracodes during periods of rapid climate and...
Little is known about the processes regulating species richness in deep-sea communities. Here we tak...
Deep-sea benthic ostracod assemblages covering the last two million years were investigated in IODP ...
Release of methane from large marine reservoirs has been linked to climate change, as a causal mecha...
Tropical climate is variable on astronomical time scale, driving changes in surface and deep-sea fau...
There is a growing evidence that changes in deep-sea benthic ecosystems are modulated by climate cha...
There is a growing evidence that changes in deep-sea benthic ecosystems are modulated by climate cha...
There is growing evidence that changes in deep-sea benthic ecosystems are modulated by climate chang...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ov...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ov...
Anthropogenic climate change is altering global biogeographical patterns. However, it remains diffic...
Aim: Little is known about how marine biodiversity responds to oceanographic and climatic changes ...
Traditionally, deep-sea ecosystems have been considered to be insulated from the effects of modern c...
Traditionally, deep-sea ecosystems have been considered to be insulated from the effects of modern c...
Within-habitat (α) diversity of living benthic foraminifera in the Atlantic Basin increases as latit...
We investigated the deep-sea fossil record of benthic ostracodes during periods of rapid climate and...
Little is known about the processes regulating species richness in deep-sea communities. Here we tak...
Deep-sea benthic ostracod assemblages covering the last two million years were investigated in IODP ...
Release of methane from large marine reservoirs has been linked to climate change, as a causal mecha...
Tropical climate is variable on astronomical time scale, driving changes in surface and deep-sea fau...