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2021-01-29
2024-04-19
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References

  1. Huang M-J, Huang W-L, Narsing Rao MP, Xiao M, Huang H-Q et al. Aureimonas psammosilene sp. nov., isolated from the roots of Psammosilene tunicoides . Arch Microbiol 2020; 202:1939–1944 [View Article]
    [Google Scholar]
  2. Liu L, Jiao J-Y, Fang B-Z, Lv A-P, Ming Y-Z et al. Isolation of Clostridium from Yunnan-Tibet hot springs and description of Clostridium thermarum sp. nov. with lignocellulosic ethanol production. Syst Appl Microbiol 2020; 43:126104 [View Article][PubMed]
    [Google Scholar]
  3. Watanabe M, Fukui M, Kuever J. Desulfallaceae fam. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  4. Galushko A, Kuever J. Desulfobacteriaceae fam. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  5. Galushko A, Kuever J. Desulfocastanea gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2019
    [Google Scholar]
  6. Watanabe M, Fukui M, Kuever J. Desulfocucumaceae fam. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  7. Watanabe M, Fukui M, Kuever J. Desulfofalx gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  8. Watanabe M, Fukui M, Kuever J. Desulfoluciania gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  9. Watanabe M, Fukui M, Kuever J. Desulforadius gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  10. Watanabe M, Fukui M, Kuever J. Desulforamulus gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  11. Watanabe M, Fukui M, Kuever J. Desulfoscipio gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  12. Galushko A, Kuever J. .Desulfothermaceae fam. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  13. Watanabe M, Fukui M, Kuever J. Desulfotruncus gen. nov.. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  14. Watanabe M, Fukui M, Kuever J. Desulfovectis gen. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  15. Galushko A, Kuever J. Desulfovermiculus . Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2019
    [Google Scholar]
  16. Watanabe M, Fukui M, Kuever J. Desulfurisporaceae fam. nov. Bergey’s Manual of Systematics of Archaea and Bacteria John Wiley & Sons, Inc., in association with Bergey’s Manual Trust; 2020
    [Google Scholar]
  17. Liao H, Lin X, Li Y, Qu M, Tian Y. Reclassification of the taxonomic framework of orders Cellvibrionales, Oceanospirillales, Pseudomonadales, and Alteromonadales in class Gammaproteobacteria through phylogenomic tree analysis. mSystems 2020; 5:e00543–20 [View Article][PubMed]
    [Google Scholar]
  18. Mhatre S, Singh NK, Wood JM, Parker CW, Pukall R et al. Description of chloramphenicol resistant Kineococcus rubinsiae sp. nov. isolated from a spacecraft assembly facility. Front Microbiol 2020; 11:1957 [View Article][PubMed]
    [Google Scholar]
  19. Kan Y, Niu X-K, Rao MPN, Dong Z-Y, Xie Y-G et al. Lysinibacillus cavernae sp. nov., isolated from cave soil. Arch Microbiol 2020; 202:1529–1534 [View Article][PubMed]
    [Google Scholar]
  20. Jung Y-J, Kim H-J, Hur M. Mesorhizobium terrae sp. nov., a novel species isolated from soil in Jangsu, Korea. Antonie van Leeuwenhoek 2020; 113:1279–1287 [View Article][PubMed]
    [Google Scholar]
  21. Pascual JA, Ros M, Martínez J, Carmona F, Bernabé A et al. Methylobacterium symbioticum sp. nov., a new species isolated from spores of Glomus iranicum var. tenuihypharum . Curr Microbiol 2020; 77:2031–2041 [View Article][PubMed]
    [Google Scholar]
  22. Liu Z-T, Xian W-D, Li M-M, Liu L, Ming Y-Z et al. Microvirga arsenatis sp. nov., an arsenate reduction bacterium isolated from Tibet hot spring sediments. Antonie van Leeuwenhoek 2020; 113:1147–1153 [View Article][PubMed]
    [Google Scholar]
  23. Sisinthy S, Gundlapally SR. Mitsuaria chitinivorans sp. nov. a potential candidate for bioremediation: emended description of the genera Mitsuaria, Roseateles and Pelomonas . Arch Microbiol 2020; 202:1839–1848 [View Article]
    [Google Scholar]
  24. Spergser J, Botes A, Nel T, Ruppitsch W, Lepuschitz S et al. Mycoplasma nasistuthionis sp. nov. and Mycoplasma struthionis sp. nov. isolated from ostriches with respiratory disease. Syst Appl Microbiol 2020; 43:126047 [View Article][PubMed]
    [Google Scholar]
  25. Fischer L, Möller Palau-Ribes F, Enderlein D, Fischer D, Herbst W et al. Corrigendum to "Description, occurrence and significance of Mycoplasma seminis sp. nov. isolated from semen of a gyrfalcon (Falco rusticolus)" [Vet. Microbiol. 247 (2020) 108789]. Vet Microbiol 2020; 249:108800 [View Article][PubMed]
    [Google Scholar]
  26. Prasad Talluri C, Bhavana M, Kumar SK, Kumar AP, Rajagopal SV. Myroides gitamensis sp.nov., L-asparaginase producing bacteria isolated from slaughter house soil sample in Vishakhapatnam, India. Microb Biochem Technol 2014; 6:144–147
    [Google Scholar]
  27. Fukushi M, Mino S, Tanaka H, Nakagawa S, Takai K et al. Biogeocemical implications of N2O-reducing thermophilic Campylobacteria in deep-sea vent fields, and the description of Nitratiruptor labii sp. nov. iScience 2020; 23:101462 [View Article][PubMed]
    [Google Scholar]
  28. Ay H. Nonomuraea terrae sp. nov., isolated from arid soil. Arch Microbiol 2020; 202:2197–2205 [View Article][PubMed]
    [Google Scholar]
  29. Li X, Zhang S, Gan L, Cai C, Tian Y et al. Ornithinibacillus caprae sp. nov., a moderate halophile isolated from the hides of a white goat. Arch Microbiol 2020; 202:1469–1476 [View Article][PubMed]
    [Google Scholar]
  30. Galushko A, Kuever J. Pseudodesulfovibrio . Bergey’s Manual of Systematics of Archaea and Bacteria Published by John Wiley & Sons, Inc., in association with Bergey’s Manual Trust;; 2019
    [Google Scholar]
  31. Poblete-Morales M, Carvajal D, Almasia R, Michea S, Cantillana C et al. Pseudomonas atacamensis sp. nov., isolated from the rhizo-sphere of desert bloom plant in the region of Atacama, Chile. Antonie van Leeuwenhoek 2020; 113:1201–1211 [View Article][PubMed]
    [Google Scholar]
  32. Jia J, Wang X, Deng P, Ma L, Baird SM et al. Pseudomonas glycinae sp. nov. isolated from the soybean rhizosphere. Microbiologyopen 2020; 9:e1101 [View Article][PubMed]
    [Google Scholar]
  33. Lee SD, Jeon D, Kim IS, Choe H, Kim J-S. Rahnella aceris sp. nov., isolated from sap drawn from Acer pictum . Arch Microbiol 2020; 202:2411–2417 [View Article][PubMed]
    [Google Scholar]
  34. Li X, Chen J, Gan L, Tian Y, Shi B. Description of Salinicola corii sp. nov., a halotolerant bacterium isolated from Wetsalted hides. Curr Microbiol 2020; 77:1932–1938 [View Article][PubMed]
    [Google Scholar]
  35. Huang Z, Dong L, Lai Q, Liu J. Spartinivicinus ruber gen. nov., sp. nov., a novel marine gammaproteobacterium producing heptylprodigiosin and cycloheptylprodigiosin as major red pigments. Front Microbiol 2020; 11:11 [View Article][PubMed]
    [Google Scholar]
  36. Madhaiyan M, Saravanan VS, Wirth JS, Alex THH, Kim S-J et al. Sphingomonas palmae sp. nov. and Sphingomonas gellani sp. nov., endophytically associated phyllosphere bacteria isolated from economically important crop plants. Antonie van Leeuwenhoek 2020; 113:1617–1632 [View Article][PubMed]
    [Google Scholar]
  37. Menon RR, Kumari S, Kumar P, Verma A, Krishnamurthi S et al. Sphingomonas pokkalii sp. nov., a novel plant associated rhizobacterium isolated from a saline tolerant pokkali rice and its draft genome analysis. Syst Appl Microbiol 2019; 42:334–342 [View Article][PubMed]
    [Google Scholar]
  38. Kallscheuer N, Jeske O, Sandargo B, Boedeker C, Wiegand S et al. Author Correction: The planctomycete Stieleria maiorica Mal15T employs stieleriacines to alter the species composition in marine biofilms. Commun Biol 2020; 3:531 [View Article][PubMed]
    [Google Scholar]
  39. Sandargo B, Jeske O, Boedeker C, Wiegand S, Wennrich J-P et al. Stieleriacines, N-acyl dehydrotyrosines from the marine planctomycete Stieleria neptunia sp. nov. Front Microbiol 2020; 11:1408 [View Article][PubMed]
    [Google Scholar]
  40. Podosokorskaya OA, Kochetkova TV, Novikov AA, Toshchakov SV, Elcheninov AG et al. Tenuifilum thalassicum gen. nov., sp. nov., a novel moderate thermophilic anaerobic bacterium from a Kunashir Island shallow hot spring representing a new family Tenuifilaceae fam. nov. in the class Bacteroidia . Syst Appl Microbiol 2020; 43:126126 [View Article][PubMed]
    [Google Scholar]
  41. Mori K, Sakurai K, Hosoyama A, Kakegawa T, Hanada S. Vestiges of adaptation to the mesophilic environment in the genome of Tepiditoga spiralis gen. nov., sp. nov. Microbes Environ 2020; 35:ME20046 [View Article][PubMed]
    [Google Scholar]
  42. Alejandre-Colomo C, Viver T, Urdiain M, Francis B, Harder J et al. Taxonomic study of nine new Winogradskyella species occurring in the shallow waters of Helgoland Roads, North Sea. Proposal of Winogradskyella schleiferi sp. nov., Winogradskyella costae sp. nov., Winogradskyella helgolandensis sp. nov., Winogradskyella vidalii sp. nov., Winogradskyella forsetii sp. nov., Winogradskyella ludwigii sp. nov., Winogradskyella ursingii sp. nov., Winogradskyella wichelsiae sp. nov., and Candidatus "Winogradskyella atlantica" sp. nov. Syst Appl Microbiol 2020; 43:126128 [View Article][PubMed]
    [Google Scholar]
  43. St John E, Liu Y, Podar M, Stott MB, Meneghin J et al. A new symbiotic nanoarchaeote (Candidatus Nanoclepta minutus) and its host (Zestosphaera tikiterensis gen. nov.) from a new Zealand hot spring. Syst Appl Microbiol 2019; 42:94–106 [View Article][PubMed]
    [Google Scholar]
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