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Effect of the Combination of Vanillin and Chitosan Coating on the Microbial Diversity and Shelf-Life of Refrigerated Turbot ( Scophthalmus maximus) Filets

机译:香草蛋白和壳聚糖涂层组合对冷藏混乱的微生物多样性和保质期的影响(<斜斜体> scophthalmus maximus )丝

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The effect of the combination of vanillin and chitosan (VC) coating on the microbiota composition and shelf-life of turbot ( Scophthalmus maximus ) filets during a 15-day storage period at 4 ± 1°day was investigated in this study. The control and coated fish samples were analyzed periodically for sensory and chemical attributes [total volatile basic nitrogen (TVB-N), thiobarbituric acid reactive substances (TBARS), and pH] and the presence of dominant spoilage microbiota. The results suggested that the sensory and the chemical quality of turbot filets effectively improved after treatment with vanillin (final concentration 2 mg/ml) combined with 1% chitosan, and the shelf-life was prolonged for 6 to 7 days compared with the control group. Furthermore, high-throughput sequencing showed that Proteobacteria (52.2%) and Firmicutes (29.8%) were the dominant bacteria at the phylum level in fresh turbot filets, while Pseudomonadaceae (40.2%) and Lactobacillaceae (39.4%) were the dominant bacteria at the family level in deteriorated turbot filets. However, after VC treatment, the relative abundance of Pseudomonadaceae and Lactobacillaceae decreased significantly due to the growth inhibition of potential bacteria, specifically spoilage bacteria, along with the rich bacterial diversity at the end of storage. Therefore, our data indicated that VC treatment might be effective in decreasing bacteria-induced quality deterioration and in extending the shelf-life of refrigerated turbot filets.
机译:在本研究中研究了香草蛋白和壳聚糖(VC)涂层(VC)涂层的组合对Microbiota组成和涡轮机(Scophthalmus Maximus)丝器的金属菌(Scophthalmus Maximus)丝物质的影响。定期分析对照和涂层的鱼样,用于感觉和化学属性[总挥发性碱性氮气(TVB-N),硫氨基吡咯酸反应性物质(TBARS)和pH]以及显性腐败微生物的存在。结果表明,用香草蛋白(最终浓度2mg / ml)与1%壳聚糖合并后,涡轮机滤波的感官和化学质量有效改善,与对照组相比,延长了保质期6至7天。此外,高通量测序显示促菌菌(52.2%)和更常规(29.8%)是新鲜大菱型丝器中门级的显性细菌,而假单胞菌(40.2%)和乳杆菌(39.4%)是其中的主要细菌劣化涡轮机内部的家庭水平。然而,在VC处理之后,由于潜在细菌的生长抑制,特异性腐败细菌的生长抑制,以及储存结束时的浓细菌多样性以及富含细菌多样性,伪表达痤疮和乳杆菌的相对丰度显着降低。因此,我们的数据表明,VC治疗可能有效降低细菌诱导的质量恶化和延长冷藏式涡轮机丝器的保质期。

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