In-Vitro Analysis of Quorum Sensing and Virulence Gene Expression in Vibrio cholerae O1 under Environmental Stress
DOI:
https://doi.org/10.31580/292gqn43Keywords:
Biofilm formation, Environmental stress, Quorum sensing, Vibrio cholera, VirulenceAbstract
Background: Vibrio cholerae adapts to environmental fluctuations by modulating its pathogenicity, a process partly governed by quorum sensing (QS). However, the precise molecular response of QS and virulence systems to a combination of environmental stressors remains incompletely characterized.
Objective: To investigate the regulatory role of QS on the expression of key virulence genes (ctxA, tcpA) in V. cholerae O1 El Tor under various in-vitro environmental stress conditions. Methods: In this laboratory study, V. cholerae cultures were exposed to oxidative (2 mM H2O2), osmotic (5% NaCl), temperature, and nutrient-limiting stresses. We performed experiments in triplicate. Bacterial growth (OD600), biofilm formation, and the relative expression of QS genes (luxS, luxO, cqsA, hapR) and virulence genes (ctxA, tcpA) were quantified using RT-qPCR. Results: Environmental stresses significantly impaired bacterial growth, with H2O2 and NaCl causing 37.6% and 48.0% reductions, respectively. Nutrient limitation led to a 1.62-fold increase in biofilm formation and upregulated ctxA (1.90-fold) and tcpA (2.10-fold) expression. Conversely, oxidative stress increased hapR expression (2.8-fold) while suppressing ctxA and tcpA. A strong negative correlation was observed between hapR and ctxA expression (r = −0.82, p < 0.001) and between hapR and tcpA (r = −0.76, p = 0.002).
Conclusion: These in-vitro findings suggest that environmental stressors trigger a QS-mediated regulatory switch in V. cholerae, balancing survival mechanisms like biofilm formation against the expression of virulence factors. This highlights the adaptive flexibility.
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