Nature Communications


Publications
27

CitationNamesAbstract
New globally distributed bacterial phyla within the FCB superphylum Gong et al. (2022). Nature Communications 13 (1) “Orphanbacterum longqiense” “Joyebacterota” “Arandabacteraceae” “Arandabacterota” “Arandabacterales” “Arandabacteria” “Orphanbacterum” “Arandabacterum bohaiense” “Blakebacterota” “Orphanbacteraceae” “Joyebacterum haimaense” “Blakebacterum guaymasense” “Orphanbacterales” “Joyebacterum” “Blakebacterum” “Orphanbacteria” “Joyebacteraceae” “Blakebacteraceae” “Orphanbacterota” “Joyebacterales” “Blakebacterales” “Arandabacterum” “Joyebacteria” “Blakebacteria”
Recovery of Lutacidiplasmatales archaeal order genomes suggests convergent evolution in Thermoplasmatota Sheridan et al. (2022). Nature Communications 13 (1) “Lutacidiplasmatales” “Lutacidiplasma silvani” “Lutacidiplasma” “Lutacidiplasmataceae”
An essential role for tungsten in the ecology and evolution of a previously uncultivated lineage of anaerobic, thermophilic Archaea Buessecker et al. (2022). Nature Communications 13 (1) Wolframiiraptor gerlachensis Ts Wolframiiraptor Wolframiiraptoraceae Benthortus lauensis Ts Geocrenenecus dongiae Ts Geocrenenecus arthurdayi Geocrenenecus huangii Terraquivivens ruidianensis Terraquivivens tengchongensis Terraquivivens yellowstonensis Benthortus Geocrenenecus Terraquivivens Terraquivivens tikiterensis Ts Wolframiiraptor sinensis Wolframiiraptor allenii
Genomic diversity across the Rickettsia and ‘Candidatus Megaira’ genera and proposal of genus status for the Torix group Davison et al. (2022). Nature Communications 13 (1) Ca. Megaira “Tisiphia”
Bacterial filamentation as a mechanism for cell-to-cell spread within an animal host Tran et al. (2022). Nature Communications 13 (1) “Bordetella atropi”
Reductive evolution and unique predatory mode in the CPR bacterium Vampirococcus lugosii Moreira et al. (2021). Nature Communications 12 (1) “Vampirococcus archaeovorus” “Vampirococcus” “Vampirococcus lugosii”
Isolation of a member of the candidate phylum ‘Atribacteria’ reveals a unique cell membrane structure Katayama et al. (2020). Nature Communications 11 (1) Atribacter Atribacteria Atribacterota
Plant hairy roots enable high throughput identification of antimicrobials against Candidatus Liberibacter spp Irigoyen et al. (2020). Nature Communications 11 (1) Liberibacter
Undinarchaeota illuminate DPANN phylogeny and the impact of gene transfer on archaeal evolution Dombrowski et al. (2020). Nature Communications 11 (1) “Undinarchaeia” “Undinarchaeota” “Naiadarchaeales” “Undinarchaeales” “Naiadarchaeaceae” “Undinarchaeaceae” “Undinarchaeum marinum”
Insights into the ecological roles and evolution of methyl-coenzyme M reductase-containing hot spring Archaea Hua et al. (2019). Nature Communications 10 (1) Ca. Methanoproducendum senex