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May 19, 2026Scientific Reports0 citationsOpen Access

Characterization of a temperate bacteriophage isolated from the ruminant-derived Streptococcus bovis/equinus complex

SPSeon Young ParkJKJun-Seob KimDJDo Young Jin

Key Points

  • This research aims to characterize a temperate bacteriophage isolated from Streptococcus bovis/equinus complex in ruminants. It focuses on the phage's properties and effects on specific bacterial strains.
  • Induced prophages from ruminant-derived SBSEC strains, including S. ruminicola.
  • Characterized the temperate phage vB_SbS-proRumen, assessing host range and stability under various conditions.
  • Analyzed the phage genome and its genetic similarities to other SBSEC prophages.
  • The temperate phage vB_SbS-proRumen effectively lyses multiple SBSEC and lactic acid bacteria strains.
  • It has a short latent period, high burst size, and retains stability in different pH and temperature environments.
  • The genome of vB_SbS-proRumen is 38,092 bp with 58 open reading frames, sharing significant similarity with other SBSEC prophages.

Abstract

Abstract Although Streptococcus bovis/equinus complex (SBSEC) lysogens are prevalent in the rumen, studies on prophages experimentally induced from these strains are limited. Herein, we screened inducible prophages from ruminant-derived SBSEC strains, including the newly reported S. ruminicola, leading to the characterization of a representative temperate phage. We successfully induced a temperate phage (vBSbS-proRumen) from S. ruminicola KCCM 90354, which has a broad host range, capable of lysing several SBSEC strains and other lactic acid bacteria. The vBSbS-proRumen belongs to the Siphovirus, characterized by a short latent period, high burst size, and stability across pH and temperature conditions typical of subacute ruminal acidosis. The phage also demonstrates potent anti-biofilm activity. The vBSbS-proRumen has a 38, 092 bp double-stranded DNA genome with 58 predicted open reading frames, sharing high similarity and conserved genetic organization with other previously predicted SBSEC prophages. This study provides valuable insights into the diversity and plasticity of SBSEC phages.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfdc7166b51b53d379092https://doi.org/10.1038/s41598-026-50797-4
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