Ecology, Evolution, Behavior and Systematics


Publications
589

CitationNamesAbstract
Candidatus List. Lists of names of prokaryotic Candidatus phyla Oren, Göker (2023). International Journal of Systematic and Evolutionary Microbiology 73 (5) “Moissliibacteriota” “Montesoliibacteriota” “Nealsoniibacteriota” “Nezhaarchaeota” “Niyogiibacteriota” “Nomuraibacteriota” “Pacearchaeota” “Peregrinibacteriota” “Poribacteriota” “Portnoyibacteriota” “Ratteibacteriota” “Raymondiibacteriota” “Roizmaniibacteriota” “Rokuibacteriota” “Ryaniibacteriota” “Saganiibacteriota” “Schekmaniibacteriota” “Spechtiibacteriota” “Stahliibacteriota” “Staskawicziibacteriota” “Sungiibacteriota” “Tagaibacteriota” “Tayloriibacteriota” “Tectimicrobiota” “Terryibacteriota” “Torokiibacteriota” “Uhriibacteriota” “Vebleniibacteriota” “Wolfeibacteriota” “Woykeibacteriota” “Yanofskyibacteriota” “Yonathiibacteriota” “Zambryskiibacteriota” “Abawacaibacteriota” “Augarchaeota” “Lokiarchaeota” “Macinerneyibacteriota” “Methanomethylicota” “Moduliflexota” “Nanohalarchaeota” “Neomarinimicrobiota” “Odinarchaeota” “Paceibacterota” “Parcunitrobacterota” “Parvarchaeota” “Poseidoniota” “Qinglongiota” “Saccharimonadota” “Sifarchaeota” “Sumerlaeota” “Tianyaibacteriota” “Undinarchaeota” “Wukongarchaeota” “Babelota” “Wirthibacterota” “Rifleibacteriota” “Joergenseniibacteriota” “Kueneniibacteriota” “Jacksoniibacteriota” “Moraniibacteriota” “Shapirobacteriota” “Zixiibacteriota” Cloacimonadota Muiribacteriota “Latescibacterota” “Acetithermota” “Aenigmatarchaeota” “Aerophobota” “Altiarchaeota” “Altimarinota” “Aminicenantota”
Water column dynamics control nitrite-dependent anaerobic methane oxidation by Candidatus “Methylomirabilis” in stratified lake basins Su et al. (2023). The ISME Journal 17 (5) Methylomirabilis
The effect of methane and methanol on the terrestrial ammonia‐oxidizing archaeon ‘ Candidatus Nitrosocosmicus franklandus <scp>C13</scp> ’ Oudova‐Rivera et al. (2023). Environmental Microbiology 25 (5) Ca. Nitrosocosmicus franklandus
Metagenomic Discovery of “ Candidatus Parvarchaeales”-Related Lineages Sheds Light on Adaptation and Diversification from Neutral-Thermal to Acidic-Mesothermal Environments Rao et al. (2023). mSystems 8 (2) “Jingweiarchaeaceae” “Rehaiarchaeum fermentans” “Parvarchaeales” “Haiyanarchaeum thermophilum” “Jingweiarchaeum tengchongense” “Parvarchaeum tengchongense” “Haiyanarchaeum” “Jingweiarchaeum” “Haiyanarchaeaceae” “Jingweiarchaeales” “Rehaiarchaeum”
Functional characterization and taxonomic classification of novel gammaproteobacterial diversity in sponges Nguyen et al. (2023). Systematic and Applied Microbiology 46 (2) Spongiicolonus versatilis Ts Spongiicolonus Spongiicolonaceae “Azophilus lithoversatilis” “Azophilus” “Azotimanducaceae” “Rariloculus versatilis” “Rariloculus” “Rariloculaceae” “Rariloculales” “Spongiifermentum lactens” “Spongiifermentum” “Spongiifermentaceae” “Spongiifermentales” Poriferihabitans thioversatilis Ts Poriferihabitans Poriferihabitantaceae “Spongiihabitans thiooxidans” “Spongiihabitans” “Oxydemutator thiolithooxidans” “Oxydemutator” “Oxydemutatoraceae”
Closed genomes uncover a saltwater species of Candidatus Electronema and shed new light on the boundary between marine and freshwater cable bacteria Sereika et al. (2023). The ISME Journal 17 (4) Electronema halotolerans Electrothrix laxa Electronema Electronema aureum Ts Electrothrix Electrothrix gigas Electrothrix arhusiensis Electrothrix communis Ts
Variations on a theme: factors regulating interaction between Diaphorina citri and “Candidatus Liberibacter asiaticus” vector and pathogen of citrus huanglongbing Hosseinzadeh, Heck (2023). Current Opinion in Insect Science 56 Ca. Liberibacter asiaticus
Cave Thiovulum (Candidatus Thiovulum stygium) differs metabolically and genomically from marine species Bizic et al. (2023). The ISME Journal 17 (3) Ca. Thiovulum karukerense Ca. Thiovulum stygium Ca. Thiovulum imperiosus
Description of two cultivated and two uncultivated new Salinibacter species, one named following the rules of the bacteriological code: Salinibacter grassmerensis sp. nov.; and three named following the rules of the SeqCode: Salinibacter pepae sp. nov., Salinibacter abyssi sp. nov., and Salinibacter pampae sp. nov Viver et al. (2023). Systematic and Applied Microbiology Salinibacter pepae Salinibacter pampae Salinibacter abyssi
Flight Performance of the Potato Psyllid (Bactericera cockerelli) is Negatively Affected by ‘Candidatus Liberibacter solanacearum’ Infection Antolínez et al. (2023). Journal of Insect Behavior 36 (1) “Liberibacter solanacearum”