Adaptations to marine versus terrestrial low temperature environments as revealed by comparative genomic analyses of the genus Psychrobacter
Results
Viruses control dominant bacteria colonizing the terrestrial deep biosphere after hydraulic fracturing
Genomic characterization of three marine fungi, including Emericellopsis atlantica sp. nov. with signatures of a generalist lifestyle and marine biomass degradation
Genomic comparisons of a bacterial lineage that inhabits both marine and terrestrial deep subsurface systems
Genomic evidence for the degradation of terrestrial organic matter by pelagic Arctic Ocean Chloroflexi bacteria
Genome Sequences of 42 Bacteria Isolated from Sorghum bicolor Roots
Mercury methylation by metabolically versatile and cosmopolitan marine bacteria
Diverse events have transferred genes for edible seaweed digestion from marine to human gut bacteria
A Novel Freshwater to Marine Evolutionary Transition Revealed within Methylophilaceae Bacteria from the Arctic Ocean
An Enzyme Family that Helped Shape Nitrogen Metabolism on Our Planet
DOE Metrics
JGI Early Career Researchers Featured in mSystems Special Issue