Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denitrification. These sediments are characterized by advective porewater flow, tidal cycling and an active and complex microbial community. Metagenomic sequencing of microbial communities sampled from such sediments showed that potential sulfur oxidizing Gammaproteobacteria and members of the enigmatic BD1-5/SN-2 candidate phylum were abundant in situ (>10% and ~2% respectively). By mimicking the dynamic oxic/anoxic environmental conditions of the sediment in a laboratory chemostat, a simplified microbial community was selected from the more complex inoculum. Metagenomics, proteomics and fluorescence in situ hybridization showed that this simplif...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Hanke A, Hamann E, Sharma R, et al. Recoding of the stop codon UGA to glycine by a BD1-5/SN-2 bacter...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Thesis (Ph.D.)--University of Washington, 2018Microbes make up a large percentage of the biomass wit...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
Hanke A, Hamann E, Sharma R, et al. Recoding of the stop codon UGA to glycine by a BD1-5/SN-2 bacter...
Sandy coastal sediments are global hotspots for microbial mineralization of organic matter and denit...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Thesis (Ph.D.)--University of Washington, 2018Microbes make up a large percentage of the biomass wit...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Marine sediments are the largest carbon sink on earth. Nearly half of dark carbon fixation in the oc...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...
Thesis (Ph.D.)--University of Washington, 2015Chemoautotrophic bacteria that oxidize sulfur and redu...