The objective of this study was to determine shifts in the microbial community structure and potential function based on standard Integrated Ocean Drilling Program storage procedures for sediment cores. Standard long-term storage protocols maintain sediment temperature at 4oC for mineralogy, geochemical, and/or geotechnical analysis whereas standard microbiological sampling immediately preserves sediments at -80oC. Storage at 4oC does not take into account populations may remain active over geologic time scales at temperatures similar to storage conditions. Identification of active populations within the stored core would suggest geochemical and geophysical conditions within the core change over time. To test this potential, the metabolica...
Bacterial and archaeal communities inhabiting the subsurface seabed live under strong energy limitat...
Biddle, Jennifer F.The application of DNA- and RNA-based molecular tools to lithological environment...
The diversity of bacterial communities in deep marine sediments, up to 503 metres below the sea floo...
The objective of this study was to determine shifts in the microbial community structure and potenti...
We have studied the effects of slow infiltration of oxygen on microbial communities in refrigerated ...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
Microbial communities occur in almost every habitat. To evaluate the homeostasis disruption of in si...
<div><p>Recent advances in DNA sequencing technologies have allowed scientists to probe increasingly...
Recent advances in DNA sequencing technologies have allowed scientists to probe increasingly complex...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
For decades, microbial community composition in subseafloor sediments has been the focus of extensiv...
International audienceFluid flow through subseafloor basalt and between basement basalt and deep sub...
Laboratory storage of deep vadose zone sediments has previously resulted in an increase in the abund...
Soil samples were collected across a shale climate gradient in North America and Australia to identi...
Bacterial and archaeal communities inhabiting the subsurface seabed live under strong energy limitat...
Biddle, Jennifer F.The application of DNA- and RNA-based molecular tools to lithological environment...
The diversity of bacterial communities in deep marine sediments, up to 503 metres below the sea floo...
The objective of this study was to determine shifts in the microbial community structure and potenti...
We have studied the effects of slow infiltration of oxygen on microbial communities in refrigerated ...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
Microbial communities occur in almost every habitat. To evaluate the homeostasis disruption of in si...
<div><p>Recent advances in DNA sequencing technologies have allowed scientists to probe increasingly...
Recent advances in DNA sequencing technologies have allowed scientists to probe increasingly complex...
Many studies have examined relationships of microorganisms to geochemical zones in subseafloor sedim...
For decades, microbial community composition in subseafloor sediments has been the focus of extensiv...
International audienceFluid flow through subseafloor basalt and between basement basalt and deep sub...
Laboratory storage of deep vadose zone sediments has previously resulted in an increase in the abund...
Soil samples were collected across a shale climate gradient in North America and Australia to identi...
Bacterial and archaeal communities inhabiting the subsurface seabed live under strong energy limitat...
Biddle, Jennifer F.The application of DNA- and RNA-based molecular tools to lithological environment...
The diversity of bacterial communities in deep marine sediments, up to 503 metres below the sea floo...