Banfield, Jillian F.


Publications
21

CitationNamesAbstract
Asgard archaea modulate potential methanogenesis substrates in wetland soil Valentin-Alvarado et al. (2023). “Asgardarchaeota” “Atabeyarchaeia”
Inference and reconstruction of the heimdallarchaeial ancestry of eukaryotes Eme et al. (2023). Nature 618 (7967) “Asgardarchaeota”
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”
Genome-resolved metagenomics reveals site-specific diversity of episymbiotic CPR bacteria and DPANN archaea in groundwater ecosystems He et al. (2021). Nature Microbiology 6 (3) “Montesoliibacteriota”
Wide diversity of methane and short-chain alkane metabolisms in uncultured archaea Borrel et al. (2019). Nature Microbiology 4 (4) “Methanolliviera hydrocarbonicum” Methanoliparia Methanoliparum thermophilum Ts Methanoliparaceae Methanoliparum Methanoliparales
Differential depth distribution of microbial function and putative symbionts through sediment-hosted aquifers in the deep terrestrial subsurface Probst et al. (2018). Nature Microbiology 3 (3) “Huberarchaeota” “Moissliibacteriota” “Ratteibacteriota” “Saganiibacteriota” “Torokiibacteriota” “Altiarchaeota” “Altiarchaeia” “Altiarchaeales” “Altiarchaeaceae” “Altiarchaeum hamiconexum” “Altiarchaeum”
Complete 4.55-Megabase-Pair Genome of “ Candidatus Fluviicola riflensis,” Curated from Short-Read Metagenomic Sequences Banfield et al. (2017). Genome Announcements 5 (47) Ca. Fluviicola riflensis
Candidatus Mycoplasma girerdii replicates, diversifies, and co-occurs with Trichomonas vaginalis in the oral cavity of a premature infant Costello et al. (2017). Scientific Reports 7 (1) Ca. Mycoplasma girerdii
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”