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/content/journal/ijsem/10.1099/ijsem.0.006561
2025-01-31
2026-01-24

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References

  1. Oren A, Arahal DR, Göker M, Moore ERB, Rossello-Mora R et al. International Code of Nomenclature of Prokaryotes. Prokaryotic Code (2022 Revision). Int J Syst Evol Microbiol 2023; 73:005585 [View Article]
    [Google Scholar]
  2. Euzéby JP, Hoyles L, Kämpfer P, Oren A, Saddler GS et al. List of Changes in Taxonomic Opinion’: making use of the new lists. Int J Syst Evol Microbiol 2004; 54:1429–1430 [View Article]
    [Google Scholar]
  3. Oren A, Garrity GM. Emendation of circumscriptions of taxa in the Lists of Changes in Taxonomic Opinion. Int J Syst Evol Microbiol 2020; 70:2163–2164 [View Article]
    [Google Scholar]
  4. Degli Esposti M, Guerrero G, Rogel MA, Issotta F, Rojas-Villalobos C et al. The phylogeny of Acetobacteraceae: photosynthetic traits and deranged respiratory enzymes. Microbiol Spectr 2023; 11:e0057523 [View Article] [PubMed]
    [Google Scholar]
  5. St. John E, Reysenbach A-L. Genomic comparison of deep-sea hydrothermal genera related to Aeropyrum, Thermodiscus and Caldisphaera, and proposed emended description of the family Acidilobaceae. Syst Appl Microbiol 2024; 47:126507 [View Article]
    [Google Scholar]
  6. Malhotra M, Bello S, Gupta RS. Phylogenomic and molecular markers based studies on clarifying the evolutionary relationships among Peptoniphilus species. Identification of several Genus-Level clades of Peptoniphilus species and transfer of some Peptoniphilus species to the genus Aedoeadaptatus. Syst Appl Microbiol 2024; 47:126499 [View Article] [PubMed]
    [Google Scholar]
  7. Deng A, Fu L, Mo P, Zheng Y, Tang T et al. New insights into the relationship between the average nucleotide identity and the digital DNA-DNA hybridization values in the genus Amycolatopsis and Amycolatopsis cynarae sp. nov., a novel actinobacterium from the rhizosphere of Cynara scolymus, and proposal of Amycolatopsis niigatensis as a synonym of Amycolatopsis echigonensis based on comparative genomic analysis. Front Microbiol 2024; 15:1359021 [View Article] [PubMed]
    [Google Scholar]
  8. Rudra B, Gupta RS. Phylogenomics studies and molecular markers reliably demarcate genus Pseudomonas sensu stricto and twelve other Pseudomonadaceae species clades representing novel and emended genera. Front Microbiol 2023; 14:1273665 [View Article] [PubMed]
    [Google Scholar]
  9. Bouznada K, Saker R, Belaouni HA, Meklat A. Phylogenomic analysis supports the reclassification of Caldicoprobacter faecalis (Winter et al. 1988) Bouanane-Darenfed et al. (2015) as a later heterotypic synonym of Caldicoprobacter oshimai Yokoyama et al. (2010). Curr Microbiol 2015; 81:363 [View Article]
    [Google Scholar]
  10. Li Y, Guo T, Sun L, Wang E-T, Young JPW et al. Phylogenomic analyses and reclassification of the Mesorhizobium complex: proposal for 9 novel genera and reclassification of 15 species. BMC Genomics 2024; 25:419 [View Article]
    [Google Scholar]
  11. Osdaghi E, Taghavi SM, Hamidizade M, Kariminejhad M, Fazliarab A et al. Multiphasic investigations imply transfer of orange-/red-pigmented strains of the bean pathogen Curtobacterium flaccumfaciens pv. flaccumfaciens to a new species as C. aurantiacum sp. nov., elevation of the poinsettia pathogen C. flaccumfaciens pv. poinsettiae to the species level as C. Poinsettiae sp. nov., and synonymy of C. albidum with C. citreum. Syst Appl Microbiol 2024; 47:126489 [View Article] [PubMed]
    [Google Scholar]
  12. Quadri SR, Jin P, Wang K, Qiao H, Dhulappa A et al. Taxonomic reframe of some species of the genera Haloferax and Halobellus. Curr Microbiol 2024; 81:216 [View Article]
    [Google Scholar]
  13. Podosokorskaya OA, Elcheninov AG, Klyukina AA, Merkel AY. Ignisphaera cupida sp. nov., a hyperthermophilic hydrolytic archaeon from a hot spring of Uzon (Kamchatka), and emended description of the genus Ignisphaera. Syst Appl Microbiol 2024; 47:126541 [View Article] [PubMed]
    [Google Scholar]
  14. Pradel N, Bartoli M, Koenen M, Bale N, Neumann-Schaal M et al. Description and genome analysis of a novel archaeon isolated from a syntrophic pyrite-forming enrichment culture and reclassification of Methanospirillum hungatei strains GP1 and SK as Methanospirillum purgamenti sp. nov. PLoS ONE 2024; 19:e0308405 [View Article] [PubMed]
    [Google Scholar]
  15. Liu Q, Xin Y-H. Sabulicella glaciei sp. nov., isolated from glacier, and reclassification of Roseomonas rubea, Roseomonas ponticola and Roseomonas oleicola as Neoroseomonas rubea comb. nov., Falsiroseomonas ponticola comb. nov. and Falsiroseomonas oleicola comb. nov. Curr Microbiol 2024; 81:345 [View Article] [PubMed]
    [Google Scholar]
  16. Bouras N, Machado RAR. Whole genome-based reclassification of several species of the genus Microbispora. PLoS One 2024; 19:e0307299 [View Article] [PubMed]
    [Google Scholar]
  17. Kingkaew E, Kato S, Iino T, Itoh T, Ohkuma M et al. Paracraurococcus lichenis sp. nov., isolated from lichen in Thailand. Arch Microbiol 2024; 206:413 [View Article]
    [Google Scholar]
  18. Duman M, García Valdés E, Ay H, Altun S, Saticioglu IB. Description of a novel fish pathogen, Plesiomonas shigelloides subsp. oncorhynchi, isolated from rainbow trout (Oncorhynchus mykiss): first genome analysis and comparative genomics. Fishes 2023; 8:179 [View Article]
    [Google Scholar]
  19. Huang Z, Li M, Oren A, Lai Q. Genome-based analysis of the family Paracoccaceae and description of Ostreiculturibacter nitratireducens gen. nov., sp. nov., isolated from an oyster farm on a tidal flat. Front Microbiol 2024; 15:1376777 [View Article] [PubMed]
    [Google Scholar]
  20. Montecillo JAV, Billacura MP, Billacura MDG. Reclassification of Aestuariicella albida as Pseudomaricurvus albidus comb. nov. and Aestuariicella hydrocarbonica as Pseudomaricurvus hydrocarbo-nicus comb. nov. based on comparative genomics and molecular synapomorphies. Curr Microbiol 2024; 81:159 [View Article]
    [Google Scholar]
  21. Poli N, Keel CJ, Garrido-Sanz D. Expanding the Pseudomonas diversity of the wheat rhizosphere: four novel species antagonizing fungal phytopathogens and with plant-beneficial properties. Front Microbiol 2024; 15:1440341
    [Google Scholar]
  22. Brady C, Crampton B, Kaur S, Maddock D, Kile H et al. Two novel Raoultella spceies associated with bleeding cankers of broadleaf hosts, Raoultella scottia sp. nov. and Raoultella lignicola sp. nov. Front Microbiol 2024; 15:1386923
    [Google Scholar]
  23. Park J, Park S, Oh K-K, Franz CMAP, Cho G-S. Scandinavium lactucae sp. nov. isolated from healthy lettuce in South Korea. Curr Microbiol 2024; 81:299 [View Article] [PubMed]
    [Google Scholar]
  24. Yang A-I, Kim B, Joe S-H, Joe H-I, Choe H et al. Sporosarcina jeotgali sp. nov, Sporosarcina oncorhynchi sp. nov., and Sporosarcina tichiuri sp. nov., isolated from jeotgal, a traditional Korean fermented seafood. J Microbiol 2024; 62:285–296 [View Article] [PubMed]
    [Google Scholar]
  25. Zayulina KS, Podosokorskaya OA, Klyukina AA, Panova TV, Novikov AA et al. A novel species of the genus Thermanaerothrix isolated from a Kamchatka hot spring possesses hydrolytic capabilities. Curr Microbiol 2024; 81:293 [View Article] [PubMed]
    [Google Scholar]
  26. Fu Z-Y, Zhang D-F, Huang M-H, Wang H-C, Chen X-Y. Thalassospira aquimaris sp. nov. and Winogradskyella marinicola sp. nov. two marine bacteria isolated from an agar-degrading co-culture. Antonie van Leeuwenhoek 2024; 117:101 [View Article]
    [Google Scholar]
  27. Harrison J, Hussain RMF, Aspin A, Grant MR, Vicente JG et al. Phylogenomic analysis supports the transfer of 20 pathovars from Xanthomonas campestris into Xanthomonas euvescatoria. Taxonomy 2023; 3:29–45 [View Article]
    [Google Scholar]
  28. Studholme DJ, Wicker E, Abrare SM, Aspin A, Bogdanove A et al. Transfer of Xanthomonas campestris pv. arecae and X. campstris pv. musacearum to X. vasicola (Vauterin) as X. vasicola pv. arecae comb. nov. and X. vasicola pv. musacearum comb. nov. and description of X. vasicola pv. vasculorum pv. nov. Phytopathology 2020; 110:1153–1160 [View Article]
    [Google Scholar]
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