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Int J Syst Evol Microbiol 54 (2004), 941-946; DOI  10.1099/ijs.0.02960-0
© 2004 International Union of Microbiological Societies

Anoxybacillus contaminans sp. nov. and Bacillus gelatini sp. nov., isolated from contaminated gelatin batches

Elke De Clerck1, Marina Rodríguez-Díaz2, Tom Vanhoutte1, Jeroen Heyrman1, Niall A. Logan2 and Paul De Vos1

1 Laboratory of Microbiology, Department of Biochemistry, Physiology and Microbiology, Ghent University, K.L. Ledeganckstraat 35, B-9000 Gent, Belgium
2 Department of Biological and Biomedical Sciences, Glasgow Caledonian University, Cowcaddens Road, Glasgow G4 OBA, UK

Correspondence
Elke De Clerck
elke.declerck{at}Ugent.be

Aerobic, endospore-forming bacteria that are attributed to the genus Bacillus or related genera constitute a hazard to the quality of gelatin. During repetitive extragenic palindromic DNA (rep)-PCR screening of gelatin isolates, a group of five isolates (group 1) and a group of 66 isolates (group 2) that did not match any pattern in our database were found. On the basis of 16S rDNA sequence analysis, representative strains of the different rep-PCR fingerprint types of group 1 were shown to be related most closely to Anoxybacillus species, but with sequence similarity of <97 %. Likewise, representative strains of group 2 were shown to be related most closely to Bacillus species, with 16S rDNA sequence similarity of <97 %. DNA–DNA reassociation values of isolates that displayed the most divergent rep-PCR profiles revealed that strains within each group belonged to a single species, according to recommendations for species delineation. A mean fatty acid profile could be calculated for each group. Isolates within a single group had similar patterns of results in API and other phenotypic tests; no correlation of patterns of results with rep-PCR groups was seen. Physiological characterization of group 1 isolates allows their distinction from other Anoxybacillus species. Despite the weak reaction of group 2 isolates in API tests, physiological characterization allows distinction between Bacillus species that react weakly in API tests. Two novel species are therefore proposed, with the names Anoxybacillus contaminans sp. nov. (type strain, LMG 21881T=DSM 15866T) and Bacillus gelatini sp. nov. (type strain, LMG 21880T=DSM 15865T).


Abbreviations: FAME, fatty acid methyl ester; rep-PCR, repetitive extragenic palindromic DNA-PCR

Published online ahead of print on 9 January 2004 as DOI 10.1099/ijs.0.02960-0.

The GenBank/EMBL/DDBJ accession numbers for the 16S rRNA gene sequences of strains LMG 21881T (=DSM 15866T) and LMG 21880T (=DSM 15865T) are AJ551330 and AJ551329, respectively.

Supplementary phylogenetic trees and fatty acid tables are available in IJSEM Online.




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