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N2 Gas Flushing Alleviates the Loss of Bacterial Diversity and Inhibits Psychrotrophic Pseudomonas during the Cold Storage of Bovine Raw Milk

机译:氮气冲洗可减轻牛生乳冷藏期间细菌多样性的丧失并抑制精神营养性假单胞菌。

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摘要

The quality and safety of raw milk still remains a worldwide challenge. Culture-dependent methods indicated that the continuous N2 gas-flushing of raw milk reduced the bacterial growth during cold storage by up to four orders of magnitude, compared to cold storage alone. This study investigated the influence of N2 gas-flushing on bacterial diversity in bovine raw-milk samples, that were either cold stored at 6°C or additionally flushed with pure N2 for up to one week. Next-generation sequencing (NGS) of the V1-V2 hypervariable regions of 16S rRNA genes, derived from amplified cDNA, which was obtained from RNA directly isolated from raw-milk samples, was performed. The reads, which were clustered into 2448 operational taxonomic units (OTUs), were phylogenetically classified. Our data revealed a drastic reduction in the diversity of OTUs in raw milk during cold storage at 6°C at 97% similarity level; but, the N2-flushing treatment alleviated this reduction and substantially limited the loss of bacterial diversity during the same cold-storage period. Compared to cold-stored milk, the initial raw-milk samples contained less Proteobacteria (mainly Pseudomonadaceae, Moraxellaceae and Enterobacteriaceae) but more Firmicutes (mainly Ruminococcaceaea, Lachnospiraceae and Oscillospiraceaea) and Bacteroidetes (mainly Bacteroidales). Significant differences between cold-stored and additionally N2-flushed milk were mainly related to higher levels of Pseudomononadaceae (including the genera Pseudomonas and Acinetobacter) in cold-stored milk samples; furthermore, rare taxa were better preserved by the N2 gas flushing compared to the cold storage alone. No major changes in bacterial composition with time were found regarding the distribution of the major 9 OTUs, that dominated the Pseudomonas genus in N2-flushed or non-flushed milk samples, other than an intriguing predominance of bacteria related to P. veronii. Overall, this study established that neither bacteria causing milk spoilage nor any well-known human pathogen or anaerobe benefited from the N2 gas flushing even though the N2-flushed and non-flushed cold-stored milk differed in bacterial counts by up to 104-fold.
机译:生乳的质量和安全性仍然是全球性挑战。依赖于培养的方法表明,与单独的冷藏相比,连续的N2气冲洗原料乳可将冷藏期间的细菌生长减少多达四个数量级。这项研究调查了氮气冲洗对牛生乳样品中细菌多样性的影响,这些样品要么在6°C下冷藏,要么用纯氮气冲洗长达一周。对从扩增的cDNA衍生的16S rRNA基因的V1-V2高变区进行了下一代测序(NGS),该扩增的cDNA是从直接从生奶样品中分离的RNA获得的。读物聚类为2448个操作分类单位(OTU),在系统发育上进行了分类。我们的数据显示,在6°C的冷藏温度下,相似度为97%时,原奶中OTU的多样性大大降低;但是,在相同的冷藏期间,N2冲洗处理减轻了这种减少并大大限制了细菌多样性的丧失。与冷藏牛奶相比,最初的生牛奶样品含有较少的变形杆菌(主要为假单胞菌科,莫拉氏菌科和肠杆菌科),但含有较多的硬毛菌(主要为Ruminococcaceaea,Lachnospiraceae和Oscillospiraceaea)和拟杆菌属(主要为拟杆菌科)。冷藏牛奶和经N2冲洗的牛奶之间的显着差异主要与冷藏牛奶样品中假单胞菌科(包括假单胞菌属和不动杆菌属)的含量较高有关。此外,与单独的冷藏相比,通过氮气冲洗可以更好地保存稀有生物分类。除了主要的9个OTU的分布以外,没有发现主要的9个OTU的分布,除了在维氏假单胞菌相关细菌中占主导地位外,在N2冲洗或未冲洗的牛奶样品中占主导地位的假单胞菌属。总体而言,这项研究表明,即使N2倒入和未倒出的冷藏牛奶在细菌数量上的差异最多为10 4 倍。

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