Original publication:
Begmatov S, Beletsky AV, Mardanov AV, Ravin NV. Genomic Analysis of the Uncultured AKYH767 Lineage from a Wastewater Treatment Plant Predicts a Facultatively Anaerobic Heterotrophic Lifestyle and the Ability to Degrade Aromatic Compounds. Water 2025; 17:1061. 🇷🇺
Nomenclatural status:
inaccurate spelling
Nomenclatural pro-status:
inaccurate spelling and not pro-validly published
Taxonomic status:
misspelling (and no pro-standing)
corrected spelling of name, not pro-validly published
Notes:
🥇 Nomenclatural type of the family "Candidatus Pollutiaquabacteraceae" Begmatov et al. 2025.Publication:
Begmatov S, Beletsky AV, Mardanov AV, Ravin NV. Genomic Analysis of the Uncultured AKYH767 Lineage from a Wastewater Treatment Plant Predicts a Facultatively Anaerobic Heterotrophic Lifestyle and the Ability to Degrade Aromatic Compounds. Water 2025; 17:1061. 🇷🇺
🥇 Nomenclatural type of the order "Candidatus Pollutiaquabacterales" Begmatov et al. 2025.Publication:
Begmatov S, Beletsky AV, Mardanov AV, Ravin NV. Genomic Analysis of the Uncultured AKYH767 Lineage from a Wastewater Treatment Plant Predicts a Facultatively Anaerobic Heterotrophic Lifestyle and the Ability to Degrade Aromatic Compounds. Water 2025; 17:1061. 🇷🇺
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:
Begmatov S, Beletsky AV, Mardanov AV, Ravin NV. Genomic Analysis of the Uncultured AKYH767 Lineage from a Wastewater Treatment Plant Predicts a Facultatively Anaerobic Heterotrophic Lifestyle and the Ability to Degrade Aromatic Compounds. Water 2025; 17:1061. 🇷🇺
Linking:
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