Original publication:
Rinke C, Schwientek P, Sczyrba A, Ivanova NN, Anderson IJ, Cheng JF, Darling A, Malfatti S, Swan BK, Gies EA, et al. Insights into the phylogeny and coding potential of microbial dark matter. Nature 2013; 499:431-437.
IJSEM list:
Oren A, Garrity GM, Parker CT, Chuvochina M, Trujillo ME. Candidatus list no. 1. Lists of names of prokaryotic Candidatus taxa. Int J Syst Evol Microbiol 2020; 70:3956-4042.
Nomenclatural status:
not validly published
Taxonomic status:
preferred name (not correct name)
Notes:
🥇 Nomenclatural type of the family "Candidatus Aminicenantaceae" Kadnikov et al. 2019.Publication:
Kadnikov VV, Mardanov AV, Beletsky AV, Karnachuk OV, Ravin NV. Genome of the candidate phylum Aminicenantes bacterium from a deep subsurface thermal aquifer revealed its fermentative saccharolytic lifestyle. Extremophiles 2019; 23:189-200.
🥇 Nomenclatural type of the family "Candidatus Aminicenantaceae" Chuvochina et al. 2023.Publication:
Chuvochina M, Mussig AJ, Chaumeil PA, Skarshewski A, Rinke C, Parks DH, Hugenholtz P. Proposal of names for 329 higher rank taxa defined in the Genome Taxonomy Database under two prokaryotic codes. FEMS Microbiol Lett 2023; 0:0.
🥇 Nomenclatural type of the order "Candidatus Aminicenantales" Kadnikov et al. 2019.Publication:
Kadnikov VV, Mardanov AV, Beletsky AV, Karnachuk OV, Ravin NV. Genome of the candidate phylum Aminicenantes bacterium from a deep subsurface thermal aquifer revealed its fermentative saccharolytic lifestyle. Extremophiles 2019; 23:189-200.
🥇 Nomenclatural type of the order "Candidatus Aminicenantales" Chuvochina et al. 2023.Publication:
Chuvochina M, Mussig AJ, Chaumeil PA, Skarshewski A, Rinke C, Parks DH, Hugenholtz P. Proposal of names for 329 higher rank taxa defined in the Genome Taxonomy Database under two prokaryotic codes. FEMS Microbiol Lett 2023; 0:0.
🥇 Nomenclatural type of the phylum "Candidatus Aminicenantes" Rinke et al. 2013.Publication:
Rinke C, Schwientek P, Sczyrba A, Ivanova NN, Anderson IJ, Cheng JF, Darling A, Malfatti S, Swan BK, Gies EA, et al. Insights into the phylogeny and coding potential of microbial dark matter. Nature 2013; 499:431-437.
🥇 Nomenclatural type of the phylum "Candidatus Aminicenantota" corrig. Rinke et al. 2013.Publication:
Rinke C, Schwientek P, Sczyrba A, Ivanova NN, Anderson IJ, Cheng JF, Darling A, Malfatti S, Swan BK, Gies EA, et al. Insights into the phylogeny and coding potential of microbial dark matter. Nature 2013; 499:431-437.
🧕 Chuvochina et al. (2023) assigned this genus to the order "Candidatus Aminicenantales" Chuvochina et al. 2023.Publication:
Chuvochina M, Mussig AJ, Chaumeil PA, Skarshewski A, Rinke C, Parks DH, Hugenholtz P. Proposal of names for 329 higher rank taxa defined in the Genome Taxonomy Database under two prokaryotic codes. FEMS Microbiol Lett 2023; 0:0.
🧕 Dedysh and Yilmaz (2018) assigned this genus to the phylum "Acidobacteriota" Whitman et al. 2018.Publication:
Dedysh SN, Yilmaz P. Refining the taxonomic structure of the phylum Acidobacteria. Int J Syst Evol Microbiol 2018; 68:3796-3806.
🧕 Kadnikov et al. (2019) assigned this genus to the order "Candidatus Aminicenantales" Kadnikov et al. 2019.Publication:
Kadnikov VV, Mardanov AV, Beletsky AV, Karnachuk OV, Ravin NV. Genome of the candidate phylum Aminicenantes bacterium from a deep subsurface thermal aquifer revealed its fermentative saccharolytic lifestyle. Extremophiles 2019; 23:189-200.
🧕 Rinke et al. (2013) assigned this genus to the phylum "Candidatus Aminicenantota" corrig. Rinke et al. 2013.Publication:
Rinke C, Schwientek P, Sczyrba A, Ivanova NN, Anderson IJ, Cheng JF, Darling A, Malfatti S, Swan BK, Gies EA, et al. Insights into the phylogeny and coding potential of microbial dark matter. Nature 2013; 499:431-437.
Subdivision:
Number of child taxa with a validly published and correct name: 0 Number of child taxa with a validly published name, including synonyms: 0 Total number of child taxa: 1
Assigned by:
Chuvochina M, Mussig AJ, Chaumeil PA, Skarshewski A, Rinke C, Parks DH, Hugenholtz P. Proposal of names for 329 higher rank taxa defined in the Genome Taxonomy Database under two prokaryotic codes. FEMS Microbiol Lett 2023; 0:0.
Linking:
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