4.7 Article

Large-Scale Phylogenomics of the Lactobacillus casei Group Highlights Taxonomic Inconsistencies and Reveals Novel Clade-Associated Features

期刊

MSYSTEMS
卷 2, 期 4, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/mSystems.00061-17

关键词

Lactobacillus casei group; accessory Sec system; catalase; comparative genomics; phylogenomics

资金

  1. Research Foundation-Flanders (FWO)
  2. Flemish Government-department EWI
  3. Agency for Innovation by Science and Technology in Flanders [IWT-SB 141198]
  4. Agency for Innovation by Science and Technology in Flanders (IWT-SBO ProCure project) [IWT/50052]
  5. University of Antwerp [DOCPRO FFB150344]
  6. Research Foundation Flanders [FWO 1S03516N, FWO 1S17916N]

向作者/读者索取更多资源

Although the genotypic and phenotypic properties of the Lactobacillus casei group have been studied extensively, the taxonomic structure has been the subject of debate for a long time. Here, we performed a large-scale comparative analysis by using 183 publicly available genomes supplemented with a Lactobacillus strain isolated from the human upper respiratory tract. On the basis of this analysis, we identified inconsistencies in the taxonomy and reclassified all of the genomes according to their most closely related type strains. This led to the identification of a catalase-encoding gene in all 10 L. casei sensu stricto strains, making it the first described catalase-positive species in the Lactobacillus genus. Moreover, we found that 6 of 10 L. casei genomes contained a SecA2/SecY2 gene cluster with two putative glycosylated surface adhesin proteins. Altogether, our results highlight current inconsistencies in the taxonomy of the L. casei group and reveal new clade-associated functional features. IMPORTANCE The closely related species of the Lactobacillus casei group are extensively studied because of their applications in food fermentations and as probiotics. Our results show that many strains in this group are incorrectly classified and that reclassifying them to their most closely related species type strain improves the functional predictive power of their taxonomy. In addition, our findings may spark increased interest in the L. casei species. We find that after reclassification, only 10 genomes remain classified as L. casei. These strains show some interesting properties. First, they all appear to be catalase positive. This suggests that they have increased oxidative stress resistance. Second, we isolated an L. casei strain from the human upper respiratory tract and discovered that it and multiple other L. casei strains harbor one or even two large, glycosylated putative surface adhesins. This might inspire further exploration of this species as a potential probiotic organism.

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