Potential mechanisms for microbial energy acquisition in oxic deep-sea sediments

BJ Tully, JF Heidelberg - Applied and Environmental Microbiology, 2016 - Am Soc Microbiol
ABSTRACT The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation,
surface chlorophyll concentration, and primary productivity in the global oceans. As a direct …

[PDF][PDF] Potential mechanisms for microbial energy

BJ Tully, JF Heidelberg - 2016 - researchgate.net
ABSTRACT The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation,
surface chlorophyll concentration, and primary productivity in the global oceans. As a direct …

[引用][C] Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and Environmental …, 2016 - ui.adsabs.harvard.edu
Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments - NASA/ADS
Now on home page ads icon ads Enable full ADS view NASA/ADS Potential Mechanisms for …

Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and environmental …, 2016 - pubmed.ncbi.nlm.nih.gov
The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation, surface
chlorophyll concentration, and primary productivity in the global oceans. As a direct result …

Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and Environmental Microbiology, 2016 - hero.epa.gov
Abstract UNLABELLED: The South Pacific Gyre (SPG) possesses the lowest rates of
sedimentation, surface chlorophyll concentration, and primary productivity in the global …

[HTML][HTML] Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and Environmental Microbiology, 2016 - ncbi.nlm.nih.gov
ABSTRACT The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation,
surface chlorophyll concentration, and primary productivity in the global oceans. As a direct …

Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and Environmental …, 2016 - dialnet.unirioja.es
Resumen The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation,
surface chlorophyll concentration, and primary productivity in the global oceans. As a direct …

Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments.

BJ Tully, JF Heidelberg - Applied and Environmental Microbiology, 2016 - europepmc.org
ABSTRACT The South Pacific Gyre (SPG) possesses the lowest rates of sedimentation,
surface chlorophyll concentration, and primary productivity in the global oceans. As a direct …

Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep-Sea Sediments

BJ Tully, JF Heidelberg - Applied and Environmental Microbiology, 2016 - cir.nii.ac.jp
抄録< jats: title> ABSTRACT</jats: title>< jats: p> The South Pacific Gyre (SPG) possesses
the lowest rates of sedimentation, surface chlorophyll concentration, and primary productivity …

[PDF][PDF] Potential Mechanisms for Microbial Energy Acquisition in Oxic Deep Sea Sediments

BJ Tully, JF Heidelberg - scienceopen.com
CheckM results were assessed independently utilizing a method described in Tully et
al.(2014). 7 Based on the putative taxonomic assignments of the bins/genomes, finished …