Diverse faunal groups inhabit deep-sea sediments over much of Earth's surface, but our understanding of how interannual-scale climate variation alters sediment community components and biogeochemical processes remains limited. The vast majority of deep-sea communities depend on a particulate organic carbon food supply that sinks from photosynthetically active surface waters. Variations in food supply depend, in part, on surface climate conditions. Proposed ocean iron fertilization efforts are also intended to alter surface production and carbon export from surface waters. Understanding the ecology of the abyssal sediment community and constituent metazoan macrofauna is important because they influence carbon and nutrient cycle processes at ...
The deep ocean benthic environment plays a role in long-term carbon sequestration. Understanding car...
Climatic fluctuations may significantly alter the taxonomic and biochemical composition of phytoplan...
Bacteria and archaea dominate the biomass of benthic deep-sea ecosystems at all latitudes, playing a...
Diverse faunal groups inhabit deep-sea sediments over much of Earth's surface, but our understanding...
We hypothesized that seasonal and interannual climate-mediated changes in particulate organic carbon...
Inputs of detritus from the surface ocean are an important driver of community dynamics in the deep ...
Deep-sea sediments cover ~70% of Earth's surface and represent the largest interface between the bio...
Deep-sea sediments cover ~70% of Earth's surface and represent the largest interface between the bio...
Climate variation affects surface ocean processes and the production of organic carbon, which ultima...
The effects of climate on abyssal megafaunal populations is largely unknown. Photo-transecting techn...
Climatic fluctuations may significantly alter the taxonomic and biochemical composition of phytoplan...
The cycling of carbon (C) by benthic organisms is a key ecosystem function in the deep sea. Pulse-ch...
The effects of climate on abyssal megafaunal populations are largely unknown. Photo-transecting tech...
The effects of climate on abyssal megafaunal populations are largely unknown. Photo-transecting tech...
<div><p>Climatic fluctuations may significantly alter the taxonomic and biochemical composition of p...
The deep ocean benthic environment plays a role in long-term carbon sequestration. Understanding car...
Climatic fluctuations may significantly alter the taxonomic and biochemical composition of phytoplan...
Bacteria and archaea dominate the biomass of benthic deep-sea ecosystems at all latitudes, playing a...
Diverse faunal groups inhabit deep-sea sediments over much of Earth's surface, but our understanding...
We hypothesized that seasonal and interannual climate-mediated changes in particulate organic carbon...
Inputs of detritus from the surface ocean are an important driver of community dynamics in the deep ...
Deep-sea sediments cover ~70% of Earth's surface and represent the largest interface between the bio...
Deep-sea sediments cover ~70% of Earth's surface and represent the largest interface between the bio...
Climate variation affects surface ocean processes and the production of organic carbon, which ultima...
The effects of climate on abyssal megafaunal populations is largely unknown. Photo-transecting techn...
Climatic fluctuations may significantly alter the taxonomic and biochemical composition of phytoplan...
The cycling of carbon (C) by benthic organisms is a key ecosystem function in the deep sea. Pulse-ch...
The effects of climate on abyssal megafaunal populations are largely unknown. Photo-transecting tech...
The effects of climate on abyssal megafaunal populations are largely unknown. Photo-transecting tech...
<div><p>Climatic fluctuations may significantly alter the taxonomic and biochemical composition of p...
The deep ocean benthic environment plays a role in long-term carbon sequestration. Understanding car...
Climatic fluctuations may significantly alter the taxonomic and biochemical composition of phytoplan...
Bacteria and archaea dominate the biomass of benthic deep-sea ecosystems at all latitudes, playing a...