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 CO<sub>2</sub> 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”