Nature Communications


Publications
28

CitationNamesAbstract
HiBC: a publicly available collection of bacterial strains isolated from the human gut Hitch et al. (2025). Nature Communications 16 (1) “Enterobacter intestinihominis” “Alistipes intestinihominis” “Peptoniphilus hominis” “Megasphaera intestinihominis” “Waltera hominis” “Ventrimonas faecis” “Ventrimonas” “Maccoyibacter intestinihominis” “Maccoyibacter” “Laedolimicola intestinihominis” “Lachnospira rogosae” “Lachnospira intestinalis” “Lachnospira hominis” “Hominiventricola aquisgranensis” “Enterocloster hominis” “Coprococcus intestinihominis” “Blautia intestinihominis” “Blautia caccae” “Blautia aquisgranensis” “Solibaculum intestinale” “Ruthenibacterium intestinale” “Ruminococcoides intestinihominis” “Ruminococcoides intestinale” “Flavonifractor hominis” “Faecousia intestinalis” “Faecousia” “Faecalibacterium tardum” “Faecalibacterium intestinale” “Pseudoflavonifractor intestinihominis” “Robertmurraya yapensis” “Niallia hominis” “Bifidobacterium hominis”
Genetic potential for aerobic respiration and denitrification in globally distributed respiratory endosymbionts Speth et al. (2024). Nature Communications 15 (1) Azoamicus ciliaticola Ts Azosocius agrarius Ts Azoamicus soli Azosocius aquiferis Azoamicus viridis Azoamicaceae Azosocius Azoamicales
Genome-guided isolation of the hyperthermophilic aerobe Fervidibacter sacchari reveals conserved polysaccharide metabolism in the Armatimonadota Nou et al. (2024). Nature Communications 15 (1) Fervidibacter antarcticus Thermosaccharophagus gerlachensis Ts Fervidibacter canadensis Thermosaccharophagus yellowstonensis Fervidibacter sacchari Ts Fervidibacteria Fervidibacterales Fervidibacteraceae Fervidibacter Thermosaccharophagaceae Thermosaccharophagus Caldisaccharidevorator sinensis Ts Fervidibacter sinensis Fervidibacter japonicus Caldisaccharidevorator Caldisaccharidevorator malaysiensis Thermosaccharophagus tengchongensis
Discovery of deep-sea coral symbionts from a novel clade of marine bacteria with severely reduced genomes Vohsen et al. (2024). Nature Communications 15 (1) “Thalassoplasma” “Oceanoplasma” “Oceanoplasmataceae” “Thalassoplasma callogorgiae” “Oceanoplasma callogorgiae”
Asgard archaea modulate potential methanogenesis substrates in wetland soil Valentin-Alvarado et al. (2024). Nature Communications 15 (1) Freyarchaeum deiterrae Ts Atabeyarchaeum deiterrae Ts Atabeyarchaeia Atabeyarchaeum Freyarchaeum Atabeyarchaeaceae Atabeyarchaeales Freyarchaeaceae Freyarchaeales Freyarchaeia
Sustained bacterial N2O reduction at acidic pH He et al. (2024). Nature Communications 15 (1) Desulfosporosinus nitrosoreducens
The protein interactome of the citrus Huanglongbing pathogen Candidatus Liberibacter asiaticus Carter et al. (2023). Nature Communications 14 (1) Ca. Liberibacter asiaticus
Globally distributed Myxococcota with photosynthesis gene clusters illuminate the origin and evolution of a potentially chimeric lifestyle Li et al. (2023). Nature Communications 14 (1) “Houyibacterium oceanica” “Houyibacterium” “Houyibacteriaceae” “Houyihalomonas phototrophica” “Xihehalomonas phototrophica” “Xihemonas sinensis” “Kuafubacteria” “Kuafubacterium phototrophica” “Kuafucaenimonas phototrophica” “Kuafuhalomonas phototrophica” “Xihepedomonas phototrophica” “Xihelimnomonas phototrophica” “Xihecaenimonas phototrophica” “Kuafubacteriales” “Kuafubacteriaceae” “Xihehalomonas” “Xihemonas” “Xihecaenibacterium” “Houyihalomonas” “Xihelimnobacterium phototrophica” “Xihelimnobacterium” “Xihemonas phototrophica” “Xihecaenibacterium phototrophica” “Xihebacterium phototrophica” “Xihebacterium glacialis” “Xihebacterium aquatica” “Xihemicrobium phototrophica” “Xihemicrobium aquatica” “Kuafubacterium” “Xihebacterium” “Xihemicrobium” “Xihecaenimonas” “Xihelimnomonas” “Xihepedomonas” “Kuafuhalomonas” “Kuafucaenimonas”
Multi-heme cytochrome-mediated extracellular electron transfer by the anaerobic methanotroph ‘Candidatus Methanoperedens nitroreducens’ Zhang et al. (2023). Nature Communications 14 (1) Ca. Methanoperedens nitroreducens
Ecophysiology and interactions of a taurine-respiring bacterium in the mouse gut Ye et al. (2023). Nature Communications 14 (1) Taurinivorans muris Ts Taurinivorans