Pérez-Gómez Olivia, Domínguez-Maqueda Marta, García-Márquez Jorge, Moriñigo Miguel Ángel, Tapia-Paniagua Silvana T
Departamento de Microbiología, Facultad de Ciencias, Instituto Andaluz de Biotecnología y Desarrollo Azul (IBYDA), Universidad de Málaga, Ceimar-Universidad de Málaga, Málaga, Spain.
Microb Ecol. 2025 May 27;88(1):55. doi: 10.1007/s00248-025-02552-x.
Biofilm formation is a survival strategy for bacteria, contributing to their persistence in natural and industrial environments. In this study, we investigated the ability of extracellular products (ECPs) produced by the probiotic strain Shewanella sp. Pdp11 under different culture conditions to inhibit biofilm formation in pathogenic and environmental Shewanella strains. ECPs from specific culture conditions altered biofilm formation in several Shewanella strains, with Shewanella hafniensis P14 displaying the highest sensitivity. Metabolomic analysis of the ECPs identified glycogen as a key metabolite associated with biofilm inhibition. Further genomic analysis of S. hafniensis P14 revealed an interruption in its glycogen synthesis pathway, suggesting a dependency on external glycogen-related metabolites for biofilm development. These findings demonstrate that Shewanella sp. Pdp11 ECPs can modify biofilm formation across multiple Shewanella strains, particularly in S. hafniensis P14 through glycogen-associated mechanisms.
生物膜形成是细菌的一种生存策略,有助于它们在自然和工业环境中持续存在。在本研究中,我们调查了益生菌希瓦氏菌属Pdp11菌株在不同培养条件下产生的胞外产物(ECPs)抑制致病性和环境希瓦氏菌菌株生物膜形成的能力。特定培养条件下的ECPs改变了几种希瓦氏菌菌株的生物膜形成,其中哈氏希瓦氏菌P14表现出最高的敏感性。对ECPs的代谢组学分析确定糖原是与生物膜抑制相关的关键代谢物。对哈氏希瓦氏菌P14的进一步基因组分析揭示了其糖原合成途径的中断,表明其生物膜发育依赖于外部与糖原相关的代谢物。这些发现表明,希瓦氏菌属Pdp11的ECPs可以通过与糖原相关的机制改变多种希瓦氏菌菌株的生物膜形成,特别是在哈氏希瓦氏菌P14中。