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May 4, 20260 citations

Species-dependent colony size variation of environmental Enterococcus on sodium azide-containing selective agar.

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SLSze Chin LimANAyaka NakamuraTKTakashi Kuda

Key Points

  • The aim is to characterize colony morphology of different Enterococcus species on sodium azide-containing agar to improve identification methods.
  • Isolated Enterococcus species from surface water using agar with 0.4 g/L sodium azide.
  • Measured colony diameters and analyzed extracellular polymeric substances through FTIR after centrifugal ultrafiltration.
  • Compared growth patterns among species based on colony size and EPS characteristics.
  • E. casseliflavus formed significantly smaller colonies (0.7 mm) compared to other species (>1.0 mm).
  • Large-diameter colonies (>1.0 mm) included E. hirae, E. lactis, and E. faecium, which had similar FTIR spectral profiles.
  • E. faecalis could be distinguished from large-diameter species based on EPS characteristics.

Abstract

The gold standard for bacterial isolation is the selection of individual colonies from agar media. Selective media supplemented with chemical inhibitors are used to promote the growth of target bacteria while suppressing non-target organisms, particularly in environmental samples. Enterococcus, a genus comprising multiple species commonly found in bacteria-rich environments, can be isolated using agar supplemented with sodium azide. However, this approach generally enables identification only at the genus level, with limited discrimination among Enterococcus species. This study provides a detailed characterization of colony morphology in enterococci isolated from surface water using colony diameter as a discriminating parameter. At 0.4 g/L sodium azide, E. casseliflavus formed significantly smaller colonies (0.7 mm) than other Enterococcus species (>1.0 mm). Species forming colonies exceeding 1.0 mm were further characterized based on their extracellular polymeric substances (EPS). FTIR analysis of crude EPS (50-100 kDa) extracted by centrifugal ultrafiltration revealed similar spectral profiles among large-diameter E. hirae, E. lactis, and E. faecium, distinguishing them from E. faecalis. This study demonstrates that colony morphology on selective media can serve as a practical, culture-based approach for preliminary differentiation of selected Enterococcus species.

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Cite This Study

Lim et al. (2026) studied this question.

synapsesocial.com/papers/69f837c23ed186a739981fa4https://doi.org/10.1016/j.mimet.2026.107525
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