Characterization of Tetragenococcus strains from sugar thick juice reveals a novel species, Tetragenococcus osmophilus sp. nov., and divides Tetragenococcus halophilus into two subspecies, T. halophilus subsp. halophilus subsp. nov. and T. halophilus subsp. flandriensis subsp. nov.

Author:

Justé A.123,Van Trappen S.4,Verreth C.123,Cleenwerck I.4,De Vos P.4,Lievens B.123,Willems K. A.231

Affiliation:

1. Leuven Food Science and Nutrition Research Centre (LFoRCe); B-3001 Leuven, Belgium

2. Scientia Terrae Research Institute, B-2860 Sint-Katelijne-Waver, Belgium

3. Laboratory for Process Microbial Ecology and Bioinspirational Management (PME&BIM), Consortium for Industrial Microbiology and Biotechnology (CIMB), Department of Microbial and Molecular Systems (M2S), KULeuven Association, Lessius University College, De Nayer Campus, B-2860 Sint-Katelijne-Waver, Belgium

4. BCCM/LMG Bacteria Collection, Laboratory for Microbiology, Ghent University, K.L. Ledeganckstraat 35, B-9000 Ghent, Belgium

Abstract

Most bacteria recovered so far from sugar thick juice during storage represent strains of the species Tetragenococcus halophilus. Recently, several Gram-positive, non-motile, non-spore-forming cocci with other physiological and genetic traits were isolated from sugar thick juice samples from different origins. In this study, representative isolates were investigated using a polyphasic taxonomic approach. The 16S rRNA gene sequence similarity between these isolates and their closest relative, Tetragenococcus muriaticus, was 97.4 %. The level of DNA–DNA relatedness between isolate T1T, representing the newly found Tetragenococcus isolates, and T. muriaticus was 57 %. Isolate T1T had a DNA G+C content of 36.7 mol%. Phylogenetic data and genomic and phenotypic features demonstrated that the isolates represent a novel species, for which the name Tetragenococcus osmophilus sp. nov. is proposed with T1T as the type strain ( = LMG 26041T  = DSM 23765T). Additionally, T. halophilus isolates from high-salt and high-sugar environments showed clear differences in several physiological and genetic characteristics like RAPD fingerprints and 16S rRNA gene sequences. DNA–DNA hybridizations, however, showed 79 to 80 % relatedness between osmophilic and halophilic T. halophilus isolates, demonstrating that the different strains belong to the same species. Based on the phenotypic and genotypic differences observed, as well as the different origins of the strains and the industrial relevance of thick juice degradation, two subspecies of T. halophilus are described in this manuscript: T. halophilus subsp. halophilus subsp. nov. for the strains isolated from salt media and T. halophilus subsp. flandriensis subsp. nov. for the strains isolated from sugar-rich environments, which were first isolated in Flanders, Belgium. The type strains for the subspecies are IAM 1676T ( = LMG 11490T  = DSM 20339T) and T5T ( = LMG 26042T  = DSM 23766T), respectively.

Publisher

Microbiology Society

Subject

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

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