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January 17, 2026Bacteria0 citationsOpen Access

Temporal Dynamics and Integrative Characterization of Streptococcus uberis Biofilm Development

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MMMelina Vanesa MolivaMCMaría Florencia CerioliIVIgnacio Velzi

Key Points

  • The aim is to characterize biofilm formation in different S. uberis strains and their virulence genes.
  • Integrated structural, biochemical, physiological, and transcriptional analyses.
  • Utilized techniques like scanning electron microscopy and qRT-PCR.
  • Examined biofilm forming capacity across four S. uberis strains.
  • Biofilm maturation peaked at 48 hours with a structured architecture.
  • Key virulence genes sua and hasA were significantly upregulated.
  • Mature biofilms showed high antibiotic tolerance, particularly against tetracycline.

Abstract

Streptococcus uberis is a bovine mastitis pathogen with a demonstrated ability to form biofilms. However, the dynamics of this process remain poorly characterized. This study aimed to comprehensively characterize biofilm formation in four S. uberis strains that differed in their biofilm-forming capacity, from weak to strong producers, and in the presence of key virulence-associated genes, such as sua, hasA and hasC. To achieve this, we integrated structural, biochemical, physiological and transcriptional analyses using scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FT-IR), spectral flow cytometry and qRT-PCR. The multi-faceted analysis revealed a coordinated maturation peak at 48 h, characterized by a structured architecture with water channels, a distinct biochemical signature rich in polysaccharides and proteins, and a predominantly viable bacterial population. This peak coincided with a marked upregulation of key virulence-associated genes, with sua expression increasing 2.5-fold and hasA increasing 3-fold at 48 h. This mature biofilm conferred high tolerance to antibiotics, with eradication concentrations (>256 µg/mL) exceeding planktonic MICs, although tetracycline was notably effective. At 72 h, the biofilm entered a dispersion phase characterized by structural collapse and reduced viability. These findings establish S. uberis biofilm maturation as a highly coordinated process, providing new insights into the biofilm lifecycle of this important pathogen and identifying key temporal and molecular targets for future interventions.

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Cite This Study

Moliva et al. (2026) studied this question.

synapsesocial.com/papers/696b26b2d2a12237a9349ed6https://doi.org/10.3390/bacteria5010006
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