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CitationNamesAbstract
Deep terrestrial indigenous microbial community dominated by Candidatus Frackibacter Ford et al. (2024). Communications Earth & Environment 5 (1) “Frackibacter”
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Comparison of qPCR protocols for quantification of “Candidatus Saccharibacteria”, belonging to the Candidate Phyla Radiation, suggests that 23S rRNA is a better target than 16S rRNA Papaleo et al. (2024). PLOS ONE 19 (12) Ca. Saccharibacteria
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Discovery of a New Cyanobacterial Genus (Paludothrix gen. nov.) from the Sanyang Wetland in Eastern China, Reflecting the Latest Taxonomic Status in Coleofasciculaceae Wu et al. (2024). Diversity 17 (1) Paludothrix Paludothrix granulosa T
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Tolerance of the Marine Anammox Candidatus Scalindua to High Nitrate Concentrations: Implications for Recirculating Aquaculture Systems Roques et al. (2024). Water 16 (24) Ca. Scalindua
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Recovery of highly contiguous genomes from complex terrestrial habitats reveals over 15,000 novel prokaryotic species and expands characterization of soil and sediment microbial communities Sereika et al. (2024).
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The complete genome sequence of “ Candidatus Liberibacter asiaticus” strain 9PA and the characterization of field strains in the Brazilian citriculture Dutra et al. (2024). mSphere 9 (12) Ca. Liberibacter asiaticus
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Nutritional niches of potentially endemic, facultatively anaerobic heterotrophs from an isolated Antarctic terrestrial hydrothermal refugium elucidated through metagenomics Herbold et al. (2024). Environmental Microbiome 19 (1) Australarchaeum erebusense Ts Australarchaeum Fervidibacter antarcticus
Bengtsoniella intestinalis gen. nov., sp. nov., a member of the family Oscillospiraceae, isolated from the hindgut of the marine herbivorous fish Kyphosus sydneyanus Pardesi et al. (2024). International Journal of Systematic and Evolutionary Microbiology 74 (12) Bengtsoniella
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Description of the first marine-isolated member of the under-represented phylum Gemmatimonadota , and the environmental distribution and ecogenomics of Gaopeijiales ord. nov Ye et al. (2024). mSystems 9 (12) Gaopeijia Gaopeijiaceae Gaopeijiales
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Identification of a Highly Expressed Gene Cluster Likely Coding for Benzene Activation Enzymes in a Methanogenic Enrichment Culture Toth et al. (2024).
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