Dodsworth, Jeremy A.


Publications
5

CitationNamesAbstract
Cultivation of novel Atribacterota from oil well provides new insight into their diversity, ecology, and evolution in anoxic, carbon-rich environments Jiao et al. (2024). Microbiome 12 (1) “Oleincola secundus” “Atribacter hydrocarboniphilus” “Profundicultor thermophilus” “Sordicultor fermentans” “Stramentimicrobium fermentans” “Infernicultor aquiphilus” “Sediminicultor sextus” “Sediminicultor quintus” “Sediminicultor quartus” “Sediminicultor tertius” “Sediminicultor secundus” “Sediminicultor” “Immundihabitans aquiphilus” “Phoenicimicrobiales” “Atribacter allofermentans” “Atribacter alterifermentans” “Atribacter fermentans” “Caldatribacterium thermophilum” “Nitricultor siberiensis” “Nitricultor lacus” “Caldatribacterium caloriphilum” “Profundicultor aquiphilus” “Profundicultor” “Sordicultor aquaticus” “Sordicultor” “Nitricultor” “Phoenicimicrobiia” “Stramentimicrobiaceae” “Stramentimicrobium” “Oleincola” “Phoenicimicrobiaceae” “Phoenicimicrobium” “Phoenicimicrobium oleiphilum” “Immundihabitans” “Infernicultor”
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
Thermoflexus hugenholtzii gen. nov., sp. nov., a thermophilic, microaerophilic, filamentous bacterium representing a novel class in the Chloroflexi, Thermoflexia classis nov., and description of Thermoflexaceae fam. nov. and Thermoflexales ord. nov Dodsworth et al. (2014). International Journal of Systematic and Evolutionary Microbiology 64 (Pt_6) “Roseilineaceae”
Insights into the phylogeny and coding potential of microbial dark matter Rinke et al. (2013). Nature 499 (7459) “Calescibacteriota” “Fervidibacterota” “Hydrogenedentota” “Iainarchaeota” “Hydrogenedens terephthalicus” “Neomarinimicrobiota” “Parvarchaeota” “Microgenomatus auricola” Omnitrophus fodinae Ts Omnitrophus “Latescibacter” “Latescibacter anaerobius” Cloacimonadota “Latescibacterota” “Aenigmatarchaeum subterraneum” “Aerophobus profundus” “Altimarinus pacificus” “Aminicenans sakinawicola” “Aminicenans” “Calescibacterium nevadense” “Nanohaloarchaeota” “Acetithermota” “Aenigmatarchaeota” “Aerophobota” “Altimarinota” “Aminicenantota” Omnitrophota “Fervidibacter” “Fervidibacter sacchari” “Fervidibacteria”
Single-cell and metagenomic analyses indicate a fermentative and saccharolytic lifestyle for members of the OP9 lineage Dodsworth et al. (2013). Nature Communications 4 (1) “Caldatribacterium californiense” “Caldatribacterium saccharofermentans”