Abstract
Vibriosis caused by Vibrio parahaemolyticus remains a major challenge in shrimp aquaculture, driving the search for alternative strategies to control pathogenic Vibrio proliferation. The probiotic-associated strain Vibrio diabolicus has been suggested to exhibit protective potential; however, how cultivation conditions influence its bioactive metabolite profile remains poorly characterised. Here, we explored the effect of culture medium composition on the metabolomic profiles and in vitro anti-Vibrio of V. diabolicus. The bacterium was cultivated in five media differing in carbon and nitrogen sources, followed by solvent fractionation and antibacterial testing. Untargeted LC–MS/MS metabolomics enabled the annotation of 25 metabolites across major chemical classes, including glycerophospholipids, fatty acid amides, indole derivatives, alkaloids, and aromatic compounds. The starch–yeast medium yielded extracts with greater anti-V. parahaemolyticus activity (methanolic fraction MIC 5 mg/mL) and no acute toxicity in shrimp larvae under the tested conditions. Molecular networking and multivariate analyses revealed medium-associate differences in metabolite composition, with enrichment of lipid-related and nitrogen-containing features in more active fractions. Docking analyses suggested potential interactions between selected metabolites and the β-lactamase CARB-20, although these predictions require experimental validation. Overall, the results indicate that cultivation conditions are associated with metabolite profile variation and corresponding differences in extract-level anti-Vibrio activity, supporting medium optimization as a practical parameter in developing Vibrio-based biocontrol approaches.
| Original language | English |
|---|---|
| Article number | 108555 |
| Journal | Microbial Pathogenesis |
| Volume | 217 |
| DOIs | |
| State | Published - Aug 2026 |
Bibliographical note
Publisher Copyright:© 2026 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
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SDG 14 Life Below Water
Keywords
- Aquaculture pathogens
- Culture medium–dependent metabolism
- Marine bacteria
- Molecular networking
- Untargeted metabolomics
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