Brown, Christopher T.


Publications
7

CitationNamesAbstract
Candidatus Nealsonbacteria” Are Likely Biomass Recycling Ectosymbionts of Methanogenic Archaea in a Stable Benzene-Degrading Enrichment Culture Chen et al. (2023). Applied and Environmental Microbiology 89 (5) “Nealsoniibacteriota”
Candidatus Nealsonbacteria (OD1) in a methanogenic benzene-degrading enrichment culture is likely an ectosymbiotic biomass recycler Chen et al. (2022). “Nealsoniibacteriota”
Genomic resolution of a cold subsurface aquifer community provides metabolic insights for novel microbes adapted to high CO2 concentrations Probst et al. (2017). Environmental Microbiology 19 (2) “Desantisiibacteriota”
Unusual respiratory capacity and nitrogen metabolism in a Parcubacterium (OD1) of the Candidate Phyla Radiation Castelle et al. (2017). Scientific Reports 7 (1) Ca. Parcunitrobacter nitroensis “Parcunitrobacterota”
Thousands of microbial genomes shed light on interconnected biogeochemical processes in an aquifer system Anantharaman et al. (2016). Nature Communications 7 (1) “Kerfeldiibacteriota” “Komeiliibacteriota” “Lindowiibacteriota” “Liptoniibacteriota” “Lloydiibacteriota” “Margulisiibacteriota” “Nealsoniibacteriota” “Niyogiibacteriota” “Portnoyibacteriota” “Raymondiibacteriota” “Ryaniibacteriota” “Schekmaniibacteriota” “Spechtiibacteriota” “Staskawicziibacteriota” “Sungiibacteriota” “Tagaibacteriota” “Tayloriibacteriota” “Terryibacteriota” “Vebleniibacteriota” “Yonathiibacteriota” “Zambryskiibacteriota” “Rifleibacteriota” “Ozemibacteria”
A new view of the tree of life Hug et al. (2016). Nature Microbiology 1 (5) “Rokuibacteriota” “Abawacaibacteriota” “Wirthibacterota”
Unusual biology across a group comprising more than 15% of domain Bacteria Brown et al. (2015). Nature 523 (7559) “Kueneniibacteriota” “Levyibacteriota” “Magasanikiibacteriota” “Moraniibacteriota” “Nomuraibacteriota” “Peregrinibacteriota” “Roizmaniibacteriota” “Shapirobacteriota” “Uhriibacteriota” “Wolfeibacteriota” “Yanofskyibacteriota” “Paceibacterota”