Erysipelothrix anatis sp. nov., Erysipelothrix aquatica sp. nov. and Erysipelothrix urinaevulpis sp. nov., three novel species of the genus, and emended description of Erysipelothrix

Author:

Eisenberg Tobias12ORCID,Mühldorfer Kristin3,Erhard Marcel4,Fawzy Ahmad51,Kehm Sabine6,Ewers Christa2,Semmler Torsten7,Blom Jochen8,Lipski André9,Rau Jörg10,Kämpfer Peter11,Glaeser Stefanie P.11

Affiliation:

1. Department of Veterinary Medicine, Hessian State Laboratory (LHL), Giessen, Germany

2. Institute of Hygiene and Infectious Diseases of Animals, Justus Liebig University Giessen, Giessen, Germany

3. Department of Wildlife Diseases, Leibniz Institute for Zoo and Wildlife Research, Berlin, Germany

4. RIPAC-LABOR GmbH, Potsdam, Germany

5. Department of Medicine and Infectious Diseases, Faculty of Veterinary Medicine, Cairo University, Giza, Egypt

6. LHL, Border Control Post, Frankfurt, Germany

7. NG1 Microbial Genomics, Robert Koch Institute, Berlin, Germany

8. Bioinformatics and Systems Biology, Justus Liebig University, Giessen, Germany

9. Institut für Ernährungs- und Lebensmittelwissenschaften, Friedrich-Wilhelms-Universität, Bonn, Germany

10. Chemisches und Veterinäruntersuchungsamt Stuttgart, Fellbach, Germany

11. Institut für angewandte Mikrobiologie, Justus Liebig University, Giessen, Germany

Abstract

Seven genotypically distinct strains assigned to the genus Erysipelothrix were isolated in different laboratories from several animal sources. Strain D17_0559-3-2-1T and three further strains were isolated from samples of duck, pig and goose. The strains had >99 % 16S rRNA gene sequence similarity to each other and to strain VA92-K48T and two further strains isolated from samples of medical leech and a turtle. The closest related type strains to the seven strains were those of Erysipelothrix inopinata (96.74 %) and Erysipelothrix rhusiopathiae (95.93 %). Average nucleotide identity, amino acid identity and in silico DNA–DNA hybridization results showed that the strains represented two separate novel species. One further phylogenetically distinct strain (165301687T) was isolated from fox urine. The strain had highest 16S rRNA gene sequence similarity to the type strains of Erysipelothrix tonsillarum (95.67 %), followed by Erysipelothrix piscisicarius (95.58 %) and Erysipelothrix larvae (94.22 %) and represented a further novel species. Chemotaxonomic and physiological data of the novel strains were assessed, but failed to unequivocally differentiate the novel species from existing members of the genus. MALDI-TOF MS data proved the discrimination of at least strain 165301687T from all currently described species. Based on the presented phylogenomic and physiological data, we propose three novel species, Erysipelothrix anatis sp. nov. with strain D17_0559-3-2-1T (=DSM 111258T= CIP 111884T=CCM 9044T) as type strain, Erysipelothrix aquatica sp. nov. with strain VA92-K48T (=DSM 106012T=LMG 30351T=CIP 111492T) as type strain and Erysipelothrix urinaevulpis sp. nov. with strain 165301687T (=DSM 106013T= LMG 30352T= CIP 111494T) as type strain.

Publisher

Microbiology Society

Subject

General Medicine,Ecology, Evolution, Behavior and Systematics,Microbiology

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