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Impact of Nisin-Activated Packaging on Microbiota of Beef Burgers during Storage

机译:乳链菌肽活化包装对牛肉汉堡储藏期间微生物群的影响

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摘要

Beef burgers were stored at 4°C in a vacuum in nisin-activated antimicrobial packaging. Microbial ecology analyses were performed on samples collected between days 0 and 21 of storage to discover the population diversity. Two batches were analyzed using RNA-based denaturing gradient gel electrophoresis (DGGE) and pyrosequencing. The active packaging retarded the growth of the total viable bacteria and lactic acid bacteria. Culture-independent analysis by pyrosequencing of RNA extracted directly from meat showed that Photobacterium phosphoreum, Lactococcus piscium, Lactobacillus sakei, and Leuconostoc carnosum were the major operational taxonomic units (OTUs) shared between control and treated samples. Beta diversity analysis of the 16S rRNA sequence data and RNA-DGGE showed a clear separation between two batches based on the microbiota. Control samples from batch B showed a significant high abundance of some taxa sensitive to nisin, such as Kocuria rhizophila, Staphylococcus xylosus, Leuconostoc carnosum, and Carnobacterium divergens, compared to control samples from batch A. However, only from batch B was it possible to find a significant difference between controls and treated samples during storage due to the active packaging. Predicted metagenomes confirmed differences between the two batches and indicated that the use of nisin-based antimicrobial packaging can determine a reduction in the abundance of specific metabolic pathways related to spoilage. The present study aimed to assess the viable bacterial communities in beef burgers stored in nisin-based antimicrobial packaging, and it highlights the efficacy of this strategy to prolong beef burger shelf life.
机译:牛肉汉堡在乳清蛋白活化的抗菌包装中于4°C真空保存。对在存储的第0天至第21天之间收集的样本进行了微生物生态学分析,以发现种群多样性。使用基于RNA的变性梯度凝胶电泳(DGGE)和焦磷酸测序分析了两批次。活性包装阻碍了总活菌和乳酸菌的生长。通过直接从肉中提取RNA的焦磷酸测序进行的不依赖培养的分析表明,在对照样品和处理样品之间共有的主要操作生物分类单位(OTU)为:光细菌,乳酸乳球菌,日本乳杆菌和肉食性隐球菌。对16S rRNA序列数据和RNA-DGGE的Beta多样性分析表明,基于微生物群的两批产品之间存在明显的分离。与批次A的对照样品相比,批次B的对照样品显示出对乳链菌肽敏感的一些分类单元的丰度很高,例如,科氏菌,木葡萄球菌,肉食性隐球菌和分枝杆菌等。由于有效包装,发现对照品和处理过的样品在存储过程中存在显着差异。预测的基因组学证实了这两个批次之间的差异,并表明使用基于乳链菌肽的抗菌包装可以确定与腐败相关的特定代谢途径数量的减少。本研究旨在评估以乳链菌肽为基础的抗菌包装中存储的牛肉汉堡中的可行细菌群落,并且强调了该策略延长牛肉汉堡货架寿命的功效。

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