| Literature DB >> 29421365 |
Tingting Li1, Dangfeng Wang2, Nan Liu2, Yan Ma2, Ting Ding3, Yongchao Mei2, Jianrong Li4.
Abstract
Pseudomonas fluorescens, an important food spoiling bacteria, uses quorum sensing to control biofilm formation and motility. To date, only a few compounds targeting the LuxR-based quorum sensing system of P. fluorescens have been identified. In the present study, the quorum sensing inhibitory effect of cinnamaldehyde at sublethal concentrations was investigated in terms of inhibition of the extracellular protease, biofilm formation, and swimming and swarming motility. The total volatile basic nitrogen value was also measured to evaluate the effect of cinnamaldehyde on quality preservation of turbot fillets stored at 4 ± 1 °C for 15 days. The results showed that cinnamaldehyde significantly inhibited quorum sensing-dependent factors in P. fluorescens and extended the storage life of turbot. Unexpectedly, cinnamaldehyde did not interfere with production of AHLs (N-acylhomoserine lactones) by P. fluorescens, as shown by measurement of AHL production using GC-MS. Molecular docking analysis revealed that cinnamaldehyde can interact with the LuxR-type protein of P. fluorescens, which could constitute the molecular basis of the quorum sensing inhibition observed. These findings strongly suggest that cinnamaldehyde is a quorum sensing inhibitor with great potential for the preservation of aquatic products to guarantee food safety.Entities:
Keywords: Cinnamaldehyde; Molecular docking; Pseudomonas fluorescens; Quorum sensing inhibitor
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Year: 2018 PMID: 29421365 DOI: 10.1016/j.ijfoodmicro.2018.01.023
Source DB: PubMed Journal: Int J Food Microbiol ISSN: 0168-1605 Impact factor: 5.277