5524 |
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4593 |
Gossele, F., Swings, J., Kersters, K., and De Ley, J. "Numerical analysis of phenotypic features and protein gel electropherograms of Gluconobacter Asai 1935 emend. mut. char. Asai, Iizuka, and Komagata 1964." Int. J. Syst. Bacteriol. (1983) 33:65-81. [No PubMed record available.] (Note: the authors conclude that Gluconbacter oxydans should not be divided into subspecies.)
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53275 |
Notification of changes in taxonomic opinion previously published outside the IJSEM. Int. J. Syst. Evol. Microbiol. (2018) 68:7-8.
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10157 |
De Ley, J., and Frateur, J. "Genus Acetobacter Beijerinck 1898, 215." In: R.E. Buchanan and N.E. Gibbons (eds.), Bergey's Manual of Determinative Bacteriology, eighth edition, The Williams & Wilkins Co., Baltimore (1974), pp. 276-278. [No PubMed record available.]
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4592 |
Skerman, V.B.D., McGowan, V., and Sneath, P.H.A. (editors): "Approved lists of bacterial names." Int. J. Syst. Bacteriol. (1980) 30:225-420. [No PubMed record available.]
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15160 |
Yukphan P,
Takahashi M,
Potacharoen W,
Tanasupawat S,
Nakagawa Y,
Tanticharoen M,
Yamada Y,
( 2004 )
Gluconobacter albidus (ex Kondo and Ameyama 1958) sp. nov., nom. rev., an acetic acid bacterium in the alpha-Proteobacteria.
The Journal of general and applied microbiology 50 (4)
PMID : 15754250
Abstract >>
N/A
|
3109 |
Young, J.M., Saddler, G.S., Takikawa, Y., De Boer, S.H., Vauterin, L., Gardan, L., Gvozdyak, R.I., and Stead, D.E. "Names of plant pathogenic bacteria 1864-1995." Rev. Plant Pathol. (1996) 75:721-763. [No PubMed record available.]
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15207 |
Asai, T., Iizuka, H., and Komagata, K. "The flagellation and taxonomy of genera Gluconobacter and Acetobacter with reference to the existence of intermediate strains." J. Gen. Appl. Microbiol. (1964) 10:95-126. [No PubMed record available.]
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10158 |
Frateur, J. "Essai sur la systematique des acetobacters." Cellule (1950) 53:287-392. [No PubMed record available.]
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5544 |
Pribram, E.: Klassification der Schizomyceten. F. Deuticke, Leipzig, (1933) pp. 1-143. [No PubMed record available.]
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50095 |
Validation List No. 144: "List of new names and new combinations previously effectively, but not validly, published." Int. J. Syst. Evol. Microbiol. (2012) 62:473-475.
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5724 |
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4595 |
Skerman, V.B.D., McGowan, V., and Sneath, P.H.A. (editors): "Approved lists of bacterial names." Int. J. Syst. Bacteriol. (1980) 30:225-420. [No PubMed record available.]
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49165 |
Li L,
Cleenwerck I,
De Vuyst L,
Vandamme P,
( 2017 )
Identification of acetic acid bacteria through matrix-assisted laser desorption/ionization time-of-flight mass spectrometry and report of Gluconobacter nephelii Kommanee et al. 2011 and Gluconobacter uchimurae Tanasupawat et al. 2012 as later heterotypic synonyms of Gluconobacter japonicus Malimas et al. 2009 and Gluconobacter oxydans (Henneberg 1897) De Ley 1961 (Approved Lists 1980) emend. Gossel? et al. 1983, respectively.
Systematic and applied microbiology 40 (3)
PMID : 28237188
DOI : 10.1016/j.syapm.2017.01.003
Abstract >>
The classification and identification of acetic acid bacteria (AAB) underwent much change during the last two decades. However, several closely related AAB species are difficult to differentiate and rapid and correct species level identification remains challenging. In the present study, 281 well-characterized AAB strains representing AAB species of the family Acetobacteraceae were used to construct a matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) identification database. The database was evaluated using 270 poorly characterized AAB strains. 16S rRNA and/or multilocus gene sequence analysis and whole-genome sequencing for the calculation of average nucleotide identity values were performed on a selection of strains to verify the accuracy of the obtained results. Virtually all poorly characterized AAB strains were accurately identified to the species level. Most of the remaining strains were considered to represent novel AAB species or belonged to species represented by too few strains in the identification database. The data also revealed that Gluconobacter nephelii and Gluconobacter uchimurae are later heterotypic synonyms of Gluconobacter japonicus and Gluconobacter oxydans, respectively.
Keyword | MeSH Terms |
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
ANI
Acetic acid bacteria
MALDI-TOF MS
Taxonomy
Whole genome sequencing
|
Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
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|
10176 |
Skerman, V.B.D., McGowan, V., and Sneath, P.H.A. (editors): "Approved lists of bacterial names." Int. J. Syst. Bacteriol. (1980) 30:225-420. [No PubMed record available.]
|
14179 |
Tanasupawat S,
Kommanee J,
Yukphan P,
Moonmangmee D,
Muramatsu Y,
Nakagawa Y,
Yamada Y,
( 2011 )
Gluconobacter uchimurae sp. nov., an acetic acid bacterium in the �\-Proteobacteria.
The Journal of general and applied microbiology 57 (5)
PMID : 22139458
Abstract >>
N/A
|
4594 |
Skerman, V.B.D., McGowan, V., and Sneath, P.H.A. (editors): "Approved lists of bacterial names." Int. J. Syst. Bacteriol. (1980) 30:225-420. [No PubMed record available.]
|
4589 |
Mason, L.M., and Claus, G.W. "Phenotypic characteristics correlated with deoxyribonucleic acid sequence similarities for three species of Gluconobacter: G. oxydans (Henneberg 1897) De Ley 1961, G. frateurii sp. nov., and G. asaii sp. nov." Int. J. Syst. Bacteriol. (1989) 39:174-184. [No PubMed record available.]
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10178 |
Skerman, V.B.D., McGowan, V., and Sneath, P.H.A. (editors): "Approved lists of bacterial names." Int. J. Syst. Bacteriol. (1980) 30:225-420. [No PubMed record available.]
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