1887

Abstract

A novel bacterial strain, designated UDC329, was isolated from a sample of seawater collected at Dong-do, on the coast of Dokdo Island, in the East Sea of the Republic of Korea. The Gram-staining-negative, motile, facultatively anaerobic, non-spore-forming rods of the strain developed into dark orange–yellow colonies. The strain grew optimally between 25 and 30 °C, with 1 % (w/v) NaCl and at pH 7. It grew in the absence of NaCl, but not with NaCl at >7 % (w/v). The predominant menaquinone was MK-7, the predominant ubiquinones were Q-7 and Q-8, and the major fatty acids were iso-C (33.52 %) and Cω8 (11.73 %). The genomic DNA G+C content of strain UDC329 was 50.2 mol%. In phylogenetic analyses based on 16S rRNA and gene sequences, strain UDC329 was grouped with members of the genus and appeared most closely related to JC15 (97.9 % 16S rRNA gene sequence similarity), KJW27 (95.0 %), ATCC 51192 (94.8 %), DW01 (94.5 %) and JC5 (93.9 %). The level of DNA–DNA relatedness between strain UDC329 and JC15 was, however, only 27.4 %. On the basis of phenotypic, genotypic and DNA–DNA relatedness data, strain UDC329 represents a novel species in the genus , for which the name sp. nov. is proposed. The type strain is UDC329 ( = KCTC 22898 = DSM 23626).

Funding
This study was supported by the:
  • Kyungpook National University Research Fund, 2010
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2012-07-01
2024-05-08
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References

  1. Aguirre A. A., Balazs G. H., Zimmerman B., Spraker T. R. 1994; Evaluation of Hawaiian green turtles (Chelonia mydas) for potential pathogens associated with fibropapillomas. J Wildl Dis 30:8–15[PubMed] [CrossRef]
    [Google Scholar]
  2. Anzai Y., Kim H., Park J. Y., Wakabayashi H., Oyaizu H. 2000; Phylogenetic affiliation of the pseudomonads based on 16S rRNA sequence. Int J Syst Evol Microbiol 50:1563–1589 [View Article][PubMed]
    [Google Scholar]
  3. Baumann P., Baumann L. 1981; The marine Gram-negative eubacteria: genera Photobacterium, Beneckea, Alteromonas, Pseudomonas, and Alcaligenes . In The Prokaryotes. A Handbook on Habitats, Isolation, and Identification of Bacteria pp. 1302–1331 Edited by Starr M. P., Stolp H., Trüper H. G., Balows A., Schlegel H. G. Berlin: Springer;
    [Google Scholar]
  4. Bowman J. P. 2005; Genus XIII. Shewanella MacDonell and Colwell 1986, 355VP (Effective publication: MacDonell and Colwell 1985, 180). In Bergey’s Manual of Systematic Bacteriology, 2nd edn. vol. 2B pp. 480–491 Edited by Brenner D. J., Krieg N. R., Staley J. T., Garrity G. M. New York: Springer;
    [Google Scholar]
  5. Bowman J. P., McCammon S. A., Nichols D. S., Skerratt J. H., Rea S. M., Nichols P. D., McMeekin T. A. 1997; Shewanella gelidimarina sp. nov. and Shewanella frigidimarina sp. nov., novel Antarctic species with the ability to produce eicosapentaenoic acid (20:5ω3) and grow anaerobically by dissimilatory Fe(III) reduction. Int J Syst Bacteriol 47:1040–1047 [View Article][PubMed]
    [Google Scholar]
  6. Bozal N., Montes M. J., Tudela E., Jiménez F., Guinea J. 2002; Shewanella frigidimarina and Shewanella livingstonensis sp. nov. isolated from Antarctic coastal areas. Int J Syst Evol Microbiol 52:195–205[PubMed]
    [Google Scholar]
  7. Brettar I., Christen R., Höfle M. G. 2002; Shewanella denitrificans sp. nov., a vigorously denitrifying bacterium isolated from the oxic-anoxic interface of the Gotland Deep in the central Baltic Sea. Int J Syst Evol Microbiol 52:2211–2217 [View Article][PubMed]
    [Google Scholar]
  8. Brink A. J., van Straten A., van Rensburg A. J. 1995; Shewanella (Pseudomonas) putrefaciens bacteremia. Clin Infect Dis 20:1327–1332 [View Article][PubMed]
    [Google Scholar]
  9. Bruns A., Rohde M., Berthe-Corti L. 2001; Muricauda ruestringensis gen. nov., sp. nov., a facultatively anaerobic, appendaged bacterium from German North Sea intertidal sediment. Int J Syst Evol Microbiol 51:1997–2006 [View Article][PubMed]
    [Google Scholar]
  10. Chun J., Lee J.-H., Jung Y., Kim M., Kim S., Kim B. K., Lim Y.-W. 2007; EzTaxon: a web-based tool for the identification of prokaryotes based on 16S ribosomal RNA gene sequences. Int J Syst Evol Microbiol 57:2259–2261 [View Article][PubMed]
    [Google Scholar]
  11. CLSI 2003 Performance standards for antimicrobial disk susceptibility tests; approved standard. CLSI document M2-A8 Wayne, PA: Clinical and Laboratory Standards Institute;
    [Google Scholar]
  12. Cowan S. T., Steel K. J. 1965 Manual for the Identification of Medical Bacteria London: Cambridge University Press;
    [Google Scholar]
  13. Debois J., Degreef H., Vandepitte J., Spaepen J. 1975; Pseudomonas putrefaciens as a cause of infection in humans. J Clin Pathol 28:993–996 [View Article][PubMed]
    [Google Scholar]
  14. Ezaki T., Hashimoto Y., Yabuuchi E. 1989; Fluorometric deoxyribonucleic acid-deoxyribonucleic acid hybridization in microdilution wells as an alternative to membrane filter hybridization in which radioisotopes are used to determine genetic relatedness among bacterial strains. Int J Syst Bacteriol 39:224–229 [View Article]
    [Google Scholar]
  15. Felsenstein J. 1985; Confidence limits on phylogenies: an approach using the bootstrap. Evolution 39:783–791 [View Article]
    [Google Scholar]
  16. Gao H., Obraztova A., Stewart N., Popa R., Fredrickson J. K., Tiedje J. M., Nealson K. H., Zhou J. 2006; Shewanella loihica sp. nov., isolated from iron-rich microbial mats in the Pacific Ocean. Int J Syst Evol Microbiol 56:1911–1916 [View Article][PubMed]
    [Google Scholar]
  17. Gauthier G., Gauthier M., Christen R. 1995; Phylogenetic analysis of the genera Alteromonas, Shewanella, and Moritella using genes coding for small-subunit rRNA sequences and division of the genus Alteromonas into two genera, Alteromonas (emended) and Pseudoalteromonas gen. nov., and proposal of twelve new species combinations. Int J Syst Bacteriol 45:755–761 [View Article][PubMed]
    [Google Scholar]
  18. Gram L., Huss H. H. 1996; Microbiological spoilage of fish and fish products. Int J Food Microbiol 33:121–137 [View Article][PubMed]
    [Google Scholar]
  19. Gram L., Trolle G., Huss H. H. 1987; Detection of specific spoilage bacteria from fish stored at low (0°C) and high (20°C) temperatures. Int J Food Microbiol 4:65–72 [View Article]
    [Google Scholar]
  20. Hirota K., Nodasaka Y., Orikasa Y., Okuyama H., Yumoto I. 2005; Shewanella pneumatophori sp. nov., an eicosapentaenoic acid-producing marine bacterium isolated from the intestines of Pacific mackerel (Pneumatophorus japonicus). Int J Syst Evol Microbiol 55:2355–2359 [View Article][PubMed]
    [Google Scholar]
  21. Holmes B., Lapage S. P., Malnick H. 1975; Strains of Pseudomonas putrefaciens from clinical material. J Clin Pathol 28:149–155 [View Article][PubMed]
    [Google Scholar]
  22. Ivanova E. P., Sawabe T., Gorshkova N. M., Svetashev V. I., Mikhailov V. V., Nicolau D. V., Christen R. 2001; Shewanella japonica sp. nov.. Int J Syst Evol Microbiol 51:1027–1033 [View Article][PubMed]
    [Google Scholar]
  23. Ivanova E. P., Nedashkovskaya O. I., Zhukova N. V., Nicolau D. V., Christen R., Mikhailov V. V. 2003a; Shewanella waksmanii sp. nov., isolated from a sipuncula (Phascolosoma japonicum). Int J Syst Evol Microbiol 53:1471–1477 [View Article][PubMed]
    [Google Scholar]
  24. Ivanova E. P., Sawabe T., Hayashi K., Gorshkova N. M., Zhukova N. V., Nedashkovskaya O. I., Mikhailov V. V., Nicolau D. V., Christen R. 2003b; Shewanella fidelis sp. nov., isolated from sediments and sea water. Int J Syst Evol Microbiol 53:577–582 [View Article][PubMed]
    [Google Scholar]
  25. Ivanova E. P., Gorshkova N. M., Bowman J. P., Lysenko A. M., Zhukova N. V., Sergeev A. F., Mikhailov V. V., Nicolau D. V. 2004a; Shewanella pacifica sp. nov., a polyunsaturated fatty acid-producing bacterium isolated from sea water. Int J Syst Evol Microbiol 54:1083–1087 [View Article][PubMed]
    [Google Scholar]
  26. Ivanova E. P., Nedashkovskaya O. I., Sawabe T., Zhukova N. V., Frolova G. M., Nicolau D. V., Mikhailov V. V., Bowman J. P. 2004b; Shewanella affinis sp. nov., isolated from marine invertebrates. Int J Syst Evol Microbiol 54:1089–1093 [View Article][PubMed]
    [Google Scholar]
  27. Jørgensen B. R., Huss H. H. 1989; Growth and activity of Shewanella putrefaciens isolated from spoiling fish. Int J Food Microbiol 9:51–62 [View Article][PubMed]
    [Google Scholar]
  28. Jukes T. H., Cantor C. R. 1969; Evolution of protein molecules. In Mammalian Protein Metabolism vol. 3 pp. 21–132 Edited by Munro H. N. New York: Academic Press;
    [Google Scholar]
  29. Khashe S., Janda J. M. 1998; Biochemical and pathogenic properties of Shewanella alga and Shewanella putrefaciens . J Clin Microbiol 36:783–787[PubMed]
    [Google Scholar]
  30. Kim D., Baik K. S., Kim M. S., Jung B.-M., Shin T.-S., Chung G.-H., Rhee M. S., Seong C. N. 2007; Shewanella haliotis sp. nov., isolated from the gut microflora of abalone, Haliotis discus hannai . Int J Syst Evol Microbiol 57:2926–2931 [View Article][PubMed]
    [Google Scholar]
  31. Komagata K., Suzuki K. 1987; Lipid and cell-wall analysis in bacterial systematics. Methods Microbiol 19:161–207 [View Article]
    [Google Scholar]
  32. Kostka J. E., Stucki J. W., Nealson K. H., Wu J. 1996; Reduction of structural Fe(III) in smectite by a pure culture of Shewanella putrefaciens strain MR-1. Clays Clay Miner 44:522–529 [View Article]
    [Google Scholar]
  33. Lányí B. 1987; Classical and rapid identification methods for medically important bacteria. Methods Microbiol 19:1–67 [View Article]
    [Google Scholar]
  34. Lee O. O., Lau S. C. K., Tsoi M. M. Y., Li X., Plakhotnikova I., Dobretsov S., Wu M. C. S., Wong P.-K., Weinbauer M., Qian P.-Y. 2006; Shewanella irciniae sp. nov., a novel member of the family Shewanellaceae, isolated from the marine sponge Ircinia dendroides in the Bay of Villefranche, Mediterranean Sea. Int J Syst Evol Microbiol 56:2871–2877 [View Article][PubMed]
    [Google Scholar]
  35. Leifson E. 1963; Determination of carbohydrate metabolism of marine bacteria. J Bacteriol 85:1183–1184[PubMed]
    [Google Scholar]
  36. Leonardo M. R., Moser D. P., Barbieri E., Brantner C. A., MacGregor B. J., Paster B. J., Stackebrandt E., Nealson K. H. 1999; Shewanella pealeana sp. nov., a member of the microbial community associated with the accessory nidamental gland of the squid Loligo pealei . Int J Syst Bacteriol 49:1341–1351 [View Article][PubMed]
    [Google Scholar]
  37. Levin R. E. 1972; Correlation of DNA base composition and metabolism of Pseudomonas putrefaciens isolates from food, human clinical specimens, and other sources. Antonie van Leeuwenhoek 38:121–127 [View Article][PubMed]
    [Google Scholar]
  38. Lovley D. R., Phillips E. J. P. 1988; Novel mode of microbial energy metabolism: organic carbon oxidation coupled to dissimilatory reduction of iron or manganese. Appl Environ Microbiol 54:1472–1480[PubMed]
    [Google Scholar]
  39. MacDonell M. T., Colwell R. R. 1985; Phylogeny of the Vibrionaceae, and recommendation for two new genera, Listonella and Shewanella . Syst Appl Microbiol 6:171–182 [View Article]
    [Google Scholar]
  40. Makemson J. C., Fulayfil N. R., Landry W., Van Ert L. M., Wimpee C. F., Widder E. A., Case J. F. 1997; Shewanella woodyi sp. nov., an exclusively respiratory luminous bacterium isolated from the Alboran Sea. Int J Syst Bacteriol 47:1034–1039 [View Article][PubMed]
    [Google Scholar]
  41. Miyazaki M., Nogi Y., Usami R., Horikoshi K. 2006; Shewanella surugensis sp. nov., Shewanella kaireitica sp. nov. and Shewanella abyssi sp. nov., isolated from deep-sea sediments of Suruga Bay, Japan. Int J Syst Evol Microbiol 56:1607–1613 [View Article][PubMed]
    [Google Scholar]
  42. Myers C. R., Nealson K. H. 1988; Bacterial manganese reduction and growth with manganese oxide as the sole electron acceptor. Science 240:1319–1321 [View Article][PubMed]
    [Google Scholar]
  43. Nealson K. H., Myers C. R., Wimpee B. 1991; Isolation and identification of manganese-reducing bacteria and estimates of microbial Mn(IV)-reducing potential in the Black Sea. Deep-Sea Res 38:S907–S920 [View Article]
    [Google Scholar]
  44. Nogi Y., Kato C., Horikoshi K. 1998; Taxonomic studies of deep-sea barophilic Shewanella strains and description of Shewanella violacea sp. nov.. Arch Microbiol 170:331–338 [View Article][PubMed]
    [Google Scholar]
  45. Nozue H., Hayashi T., Hashimoto Y., Ezaki T., Hamasaki K., Ohwada K., Terawaki Y. 1992; Isolation and characterization of Shewanella alga from human clinical specimens and emendation of the description of S. alga Simidu et al., 1990, 335. Int J Syst Bacteriol 42:628–634 [View Article][PubMed]
    [Google Scholar]
  46. Pankaj V., Prashant K. P., Arvind K. G., Kim H. J., Baik K. S., Seong C. N., Milind S. P., Yogesh S. S. 2011; Shewanella indica sp. nov., isolated from the sediment of Arabian Sea. Int J Syst Evol Microbiol 61:2058–2064 [View Article][PubMed]
    [Google Scholar]
  47. Park S. C., Baik K. S., Kim M. S., Kim D., Seong C. N. 2009; Shewanella marina sp. nov., isolated from seawater. Int J Syst Evol Microbiol 59:1888–1894 [View Article][PubMed]
    [Google Scholar]
  48. Perry K. A., Kostka J. E., Luther G. W. III, Nealson K. H. 1993; Mediation of sulfur speciation by a black sea facultative anaerobe. Science 259:801–803 [View Article][PubMed]
    [Google Scholar]
  49. Petrovskis E. A., Vogel T. M., Adriaens P. 1994; Effects of electron acceptors and donors on transformation of tetrachloromethane by Shewanella putrefaciens MR-1. FEMS Microbiol Lett 121:357–363 [View Article][PubMed]
    [Google Scholar]
  50. Saitou N., Nei M. 1987; The neighbor-joining method: a new method for reconstructing phylogenetic trees. Mol Biol Evol 4:406–425[PubMed]
    [Google Scholar]
  51. Sasser M. 1990 Identification of bacteria by gas chromatography of cellular fatty acids, MIDI Technical Note 101. Newark, DE: MIDI Inc.
  52. Satomi M., Oikawa H., Yano Y. 2003; Shewanella marinintestina sp. nov., Shewanella schlegeliana sp. nov. and Shewanella sairae sp. nov., novel eicosapentaenoic-acid-producing marine bacteria isolated from sea-animal intestines. Int J Syst Evol Microbiol 53:491–499 [View Article][PubMed]
    [Google Scholar]
  53. Satomi M., Vogel B. F., Gram L., Venkateswaran K. 2006; Shewanella hafniensis sp. nov. and Shewanella morhuae sp. nov., isolated from marine fish of the Baltic Sea. Int J Syst Evol Microbiol 56:243–249 [View Article][PubMed]
    [Google Scholar]
  54. Satomi M., Vogel B. F., Venkateswaran K., Gram L. 2007; Description of Shewanella glacialipiscicola sp. nov. and Shewanella algidipiscicola sp. nov., isolated from marine fish of the Danish Baltic Sea, and proposal that Shewanella affinis is a later heterotypic synonym of Shewanella colwelliana . Int J Syst Evol Microbiol 57:347–352 [View Article][PubMed]
    [Google Scholar]
  55. Semple K. M., Westlake D. W. S. 1987; Characterization of iron-reducing Alteromonas putrefaciens strains from oil field fluids. Can J Microbiol 33:366–371 [View Article]
    [Google Scholar]
  56. Simidu U., Kita-Tsukamoto K., Yasumoto T., Yotsu M. 1990; Taxonomy of four marine bacterial strains that produce tetrodotoxin. Int J Syst Bacteriol 40:331–336 [View Article][PubMed]
    [Google Scholar]
  57. Skerratt J. H., Bowman J. P., Nichols P. D. 2002; Shewanella olleyana sp. nov., a marine species isolated from a temperate estuary which produces high levels of polyunsaturated fatty acids. Int J Syst Evol Microbiol 52:2101–2106 [View Article][PubMed]
    [Google Scholar]
  58. Sravan Kumar R., Sasi J. T. S., Sasikala C., Seong C. N., Lim C. H., Seong C. P., Ramana C. V. 2010; Shewanella fodinae sp. nov., isolated from a coal mine and from a marine lagoon. Int J Syst Evol Microbiol 60:2101–2106 [View Article][PubMed]
    [Google Scholar]
  59. Stenström I. M., Molin G. 1990; Classification of the spoilage flora of fish, with special reference to Shewanella putrefaciens . J Appl Bacteriol 68:601–618 [View Article][PubMed]
    [Google Scholar]
  60. Sucharita K., Sasikala Ch., Park S. C., Baik K. S., Seong C. N., Ramana Ch. V. 2009; Shewanella chilikensis sp. nov., a moderately alkaliphilic gammaproteobacterium isolated from a lagoon. Int J Syst Evol Microbiol 59:3111–3115 [View Article][PubMed]
    [Google Scholar]
  61. Tamaoka J., Komagata K. 1984; Determination of DNA base composition by reversed-phase high-performance liquid chromatography. FEMS Microbiol Lett 25:125–128 [View Article]
    [Google Scholar]
  62. Toffin L., Bidault A., Pignet P., Tindall B. J., Slobodkin A., Kato C., Prieur D. 2004; Shewanella profunda sp. nov., isolated from deep marine sediment of the Nankai Trough. Int J Syst Evol Microbiol 54:1943–1949 [View Article][PubMed]
    [Google Scholar]
  63. Venkateswaran K., Dollhopf M. E., Aller R., Stackebrandt E., Nealson K. H. 1998; Shewanella amazonensis sp. nov., a novel metal-reducing facultative anaerobe from Amazonian shelf muds. Int J Syst Bacteriol 48:965–972 [View Article][PubMed]
    [Google Scholar]
  64. Venkateswaran K., Moser D. P., Dollhopf M. E., Lies D. P., Saffarini D. A., MacGregor B. J., Ringelberg D. B., White D. C., Nishijima M. other authors 1999; Polyphasic taxonomy of the genus Shewanella and description of Shewanella oneidensis sp. nov.. Int J Syst Bacteriol 49:705–724 [View Article][PubMed]
    [Google Scholar]
  65. Wayne L. G., Brenner D. J., Colwell R. R., Grimont P. A. D., Kandler O., Krichevsky M. I., Moore L. H., Moore W. E. C., Murray R. G. E. other authors 1987; International Committee on Systematic Bacteriology. Report of the ad hoc committee on reconciliation of approaches to bacterial systematics. Int J Syst Bacteriol 37:463–464 [View Article]
    [Google Scholar]
  66. Xiao X., Wang P., Zeng X., Bartlett D. H., Wang F. 2007; Shewanella psychrophila sp. nov. and Shewanella piezotolerans sp. nov., isolated from west Pacific deep-sea sediment. Int J Syst Evol Microbiol 57:60–65 [View Article][PubMed]
    [Google Scholar]
  67. Xu M., Guo J., Cen Y., Zhong X., Cao W., Sun G. 2005; Shewanella decolorationis sp. nov., a dye-decolorizing bacterium isolated from activated sludge of a waste-water treatment plant. Int J Syst Evol Microbiol 55:363–368 [View Article][PubMed]
    [Google Scholar]
  68. Yamamoto S., Harayama S. 1995; PCR amplification and direct sequencing of gyrB genes with universal primers and their application to the detection and taxonomic analysis of Pseudomonas putida strains. Appl Environ Microbiol 61:1104–1109[PubMed]
    [Google Scholar]
  69. Yang S.-H., Kwon K. K., Lee H.-S., Kim S.-J. 2006; Shewanella spongiae sp. nov., isolated from a marine sponge. Int J Syst Evol Microbiol 56:2879–2882 [View Article][PubMed]
    [Google Scholar]
  70. Yang S.-H., Lee J.-H., Ryu J.-S., Kato C., Kim S.-J. 2007; Shewanella donghaensis sp. nov., a psychrophilic, piezosensitive bacterium producing high levels of polyunsaturated fatty acid, isolated from deep-sea sediments. Int J Syst Evol Microbiol 57:208–212 [View Article][PubMed]
    [Google Scholar]
  71. Yoon J.-H., Kim H., Kim S.-B., Kim H.-J., Kim W. Y., Lee S. T., Goodfellow M., Park Y.-H. 1996; Identification of Saccharomonospora strains by the use of genomic DNA fragments and rRNA gene probes. Int J Syst Bacteriol 46:502–505 [View Article]
    [Google Scholar]
  72. Yoon J.-H., Lee S. T., Park Y.-H. 1998; Inter- and intraspecific phylogenetic analysis of the genus Nocardioides and related taxa based on 16S rDNA sequences. Int J Syst Bacteriol 48:187–194 [View Article][PubMed]
    [Google Scholar]
  73. Yoon J.-H., Kim I.-G., Shin D.-Y., Kang K. H., Park Y.-H. 2003; Microbulbifer salipaludis sp. nov., a moderate halophile isolated from a Korean salt marsh. Int J Syst Evol Microbiol 53:53–57 [View Article][PubMed]
    [Google Scholar]
  74. Yoon J. H., Kang K. H., Oh T. K., Park Y. H. 2004a; Shewanella gaetbuli sp. nov., a slight halophile isolated from a tidal flat in Korea. Int J Syst Evol Microbiol 54:487–491 [View Article][PubMed]
    [Google Scholar]
  75. Yoon J. H., Yeo S. H., Kim I. G., Oh T. K. 2004b; Shewanella marisflavi sp. nov. and Shewanella aquimarina sp. nov., slightly halophilic organisms isolated from sea water of the Yellow Sea in Korea. Int J Syst Evol Microbiol 54:2347–2352 [View Article][PubMed]
    [Google Scholar]
  76. Zhao J.-S., Manno D., Beaulieu C., Paquet L., Hawari J. 2005; Shewanella sediminis sp. nov., a novel Na+-requiring and hexahydro-1,3,5-trinitro-1,3,5-triazine-degrading bacterium from marine sediment. Int J Syst Evol Microbiol 55:1511–1520 [View Article][PubMed]
    [Google Scholar]
  77. Zhao J.-S., Manno D., Leggiadro C., O’Neil D., Hawari J. 2006; Shewanella halifaxensis sp. nov., a novel obligately respiratory and denitrifying psychrophile. Int J Syst Evol Microbiol 56:205–212 [View Article][PubMed]
    [Google Scholar]
  78. Zhao J.-S., Manno D., Thiboutot S., Ampleman G., Hawari J. 2007; Shewanella canadensis sp. nov. and Shewanella atlantica sp. nov., manganese dioxide- and hexahydro-1,3,5-trinitro-1,3,5-triazine-reducing, psychrophilic marine bacteria. Int J Syst Evol Microbiol 57:2155–2162 [View Article][PubMed]
    [Google Scholar]
  79. Ziemke F., Höfle M. G., Lalucat J., Rosselló-Mora R. 1998; Reclassification of Shewanella putrefaciens Owen’s genomic group II as Shewanella baltica sp. nov.. Int J Syst Bacteriol 48:179–186 [View Article][PubMed]
    [Google Scholar]
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