Streptomyces castrisilvae sp. nov. and Streptomyces glycanivorans sp. nov., novel soil streptomycetes metabolizing mutan and alternan

Author:

Widén Tove1ORCID,Rangel Albert Tafur213ORCID,Lombard Vincent4ORCID,Drula Elodie54ORCID,Mazurkewich Scott1ORCID,Terrapon Nicolas4ORCID,Kerkhoven Eduard J.21ORCID,Larsbrink Johan16ORCID

Affiliation:

1. Department of Life Sciences, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden

2. Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark

3. Present address: Department of Microbiology, Universidad Popular del Cesar, Valledupar, Colombia

4. Architecture et Fonction des Macromolécules Biologiques, USC 1408 INRAE, UMR 7257 AMU, CNRS, FR-13288 Marseille, France

5. INRAE, Biodiversité et Biotechnologie Fongiques, UMR 1163, Aix Marseille Université, Marseille, France

6. Wallenberg Wood Science Center, Chalmers University of Technology, SE-412 96, Gothenburg, Sweden

Abstract

Six bacterial strains, Mut1T, Mut2, Alt1, Alt2, Alt3T, and Alt4, were isolated from soil samples collected in parks in Gothenburg, Sweden, based on their ability to utilize the insoluble polysaccharides α−1,3-glucan (mutan; Mut strains) or the mixed-linkage α−1,3/α−1,6-glucan (alternan; Alt strains). Analysis of 16S rRNA gene sequences identified all strains as members of the genus Streptomyces. The genomes of the strains were sequenced and subsequent phylogenetic analyses identified Mut2 as a strain of Streptomyces laculatispora and Alt1, Alt2 and Alt4 as strains of Streptomyces poriferorum, while Mut1T and Alt3T were most closely related to the type strains Streptomyces drozdowiczii NBRC 101007T and Streptomyces atroolivaceus NRRL ISP-5137T, respectively. Comprehensive genomic and biochemical characterizations were conducted, highlighting typical features of Streptomyces, such as large genomes (8.0–9.6 Mb) with high G+C content (70.5–72.0%). All six strains also encode a wide repertoire of putative carbohydrate-active enzymes, indicating a capability to utilize various complex polysaccharides as carbon sources such as starch, mutan, and cellulose, which was confirmed experimentally. Based on phylogenetic and phenotypic characterization, our study suggests that strains Mut1T and Alt3T represent novel species in the genus Streptomyces for which the names Streptomyces castrisilvae sp. nov. and Streptomyces glycanivorans sp. nov. are proposed, with strains Mut1T (=DSM 117248T=CCUG 77596T) and Alt3T (=DSM 117252T=CCUG 77600T) representing the respective type strains.

Funder

Vetenskapsrådet

Novo Nordisk Fonden

Adlerbertska Stiftelserna

Publisher

Microbiology Society

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