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The importance of designating type material for uncultured taxa Chuvochina et al. (2019). Systematic and Applied Microbiology 42 (1) Binatus soli Ts Binatus Binataceae Binatales Binatia Hydrothermus pacificus Ts Hydrothermus Hydrothermarchaeum profundi Ts Hydrothermarchaeum Hadarchaeum yellowstonense Ts Hadarchaeum Hadarchaeales Hydrothermarchaeaceae Hydrothermarchaeales Hydrothermarchaeia “Hydrothermarchaeota” Hadarchaeia Hadarchaeaceae Hadarchaeota
Global diversity of enterococci and description of 18 previously unknown species Schwartzman et al. (2024). Proceedings of the National Academy of Sciences 121 (10) Enterococcus mansonii Enterococcus ikei Enterococcus myersii Enterococcus leclercqii Enterococcus ferrettii Enterococcus wittei Enterococcus courvalinii Enterococcus palustris Enterococcus dunnyi Enterococcus huntleyi Enterococcus mangumiae Enterococcus moelleringii Enterococcus murrayae Enterococcus testudinis Enterococcus lowellii Enterococcus willemsii Enterococcus lemimoniae Enterococcus clewellii Vagococcus giribetii
Thousands of microbial genomes shed light on interconnected biogeochemical processes in an aquifer system Anantharaman et al. (2016). Nature Communications 7 (1) “Nealsoniibacteriota” “Niyogiibacteriota” “Portnoyibacteriota” “Raymondiibacteriota” “Ryaniibacteriota” “Schekmaniibacteriota” “Spechtiibacteriota” “Staskawicziibacteriota” “Sungiibacteriota” “Tagaibacteriota” “Tayloriibacteriota” “Terryibacteriota” “Vebleniibacteriota” “Yonathiibacteriota” “Zambryskiibacteriota” “Rifleibacteriota” “Ozemibacteria”
Reevaluation of the Phylogenetic Diversity and Global Distribution of the Genus “CandidatusAccumulibacter” Petriglieri et al. (2022). mSystems 7 (3) “Accumulibacter” “Accumulibacter adiacens” “Accumulibacter meliphilus” “Accumulibacter propinquus” “Accumulibacter contiguus” “Accumulibacter vicinus” “Accumulibacter cognatus” “Accumulibacter affinis” “Accumulibacter proximus” “Accumulibacter necessarius” “Accumulibacter iunctus” “Accumulibacter similis” “Accumulibacter conexus” “Propionivibrio dominans” “Accumulibacter adjunctus” “Proximibacter danicus” “Proximibacter”
Andean soil-derived lignocellulolytic bacterial consortium as a source of novel taxa and putative plastic-active enzymes Díaz-García et al. (2024). Systematic and Applied Microbiology 47 (1) Andeanibacterium Andeanibacterium colombiense Ts Pedobacter colombiensis Brevundimonas colombiensis Pseudomonas colombiensis Sphingomonas colombiensis Kaistia colombiensis Microbacterium colombiense Chryseobacterium colombiense Cohnella colombiensis Pseudobacter hemicellulosilyticus Sphingomonas phytovorans Brevundimonas phytovorans Pseudomonas phytovorans Devosia phytovorans Microbacterium phytovorans
Genomic delineation and description of species and within-species lineages in the genus Pantoea Crosby et al. (2023). Frontiers in Microbiology 14 Pantoea alvi Pantoea multigeneris Pantoea floridensis Pantoea haifensis Pantoea varia Pantoea rara Pantoea gossypiicola Pantoea bituminis Pantoea deserta Pantoea formicae Pantoea soli Pantoea astica Pantoea borealis Pantoea superficialis Pantoea symbiotica Pantoea communis
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
Identification, classification, and functional characterization of novel sponge-associated acidimicrobiial species Nguyen et al. (2023). Systematic and Applied Microbiology 46 (4) Spongiisocius variivorans Ts Hopanoidiivorans cymbastelae Ts Poriferisocius aerobius Ts Poriferisocius anaerobius Poriferisodalis multihospitum Ts Spongiisocius Hopanoidiivorans Poriferisocius Poriferisodalis Aldehydirespirator catecholifindens Ts Poriferisodalaceae Hopanoidiivorantaceae Aldehydirespiratoraceae Spongiisociales Spongiisociaceae Aldehydirespirator
Recoding of stop codons expands the metabolic potential of two novel Asgardarchaeota lineages Sun et al. (2021). ISME Communications 1 (1) Ca. Borrarchaeum weybense “Jordarchaeum” “Jordarchaeum madagascariense” “Sifarchaeaceae” “Jordarchaeaceae” “Sifarchaeales” “Jordarchaeales” “Sifarchaeia” “Jordarchaeia” Ca. Borrarchaeaceae Ca. Borrarchaeum “Sifarchaeum” Ca. Sifarchaeum marinoarchaea Ca. Sifarchaeum subterraneus “Sifarchaeota”
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”