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冷应激后生物膜形成的研究。 (你提供的原文“Research on the Biofilm Formation of after Cold Stress.”中“of”后面似乎缺失了具体内容)

Research on the Biofilm Formation of after Cold Stress.

作者信息

Qiao Jiaju, Zheng Liping, Lu Zhaoxin, Meng Fanqiang, Bie Xiaomei

机构信息

College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Microorganisms. 2021 Jul 19;9(7):1534. doi: 10.3390/microorganisms9071534.

Abstract

is a common food pathogen and has a strong tolerance to environmental stress. Here, the biofilm formation of strains after cold stress for 24 weeks were investigated. It was found that the biofilm formation of CICC 21600, CICC 22942, W1, W3, and C1 cells was enhanced after cold stress for 20 weeks. What is more, the mRNA levels of the , , , or genes in these strains were increased for >2-fold. The increased gene transcription levels were consistent with the increase in the polysaccharide content in the biofilm matrix of these strains after cold stress. Meanwhile, hydrophobicity and the adhesion proteins also played a role in the formation of biofilms. The biofilm of cells can be effectively degraded by snailase and proteinase K (125 µg/mL + 20 µg/mL) mixture. In summary, frozen at -20 °C for 12 to 20 weeks is still a potential hazard. Food factory equipment should be cleaned in a timely manner to avoid outbreaks of foodborne pathogenic bacteria due to contamination.

摘要

是一种常见的食源性病原体,对环境压力具有很强的耐受性。在此,研究了菌株在冷应激24周后的生物膜形成情况。发现CICC 21600、CICC 22942、W1、W3和C1细胞在冷应激20周后的生物膜形成增强。此外,这些菌株中、、、或基因的mRNA水平增加了2倍以上。基因转录水平的增加与这些菌株在冷应激后生物膜基质中多糖含量的增加一致。同时,疏水性和粘附蛋白在生物膜的形成中也起作用。细胞的生物膜可被蜗牛酶和蛋白酶K(125μg/mL + 20μg/mL)混合物有效降解。总之,在-20°C下冷冻12至20周仍然是一个潜在危害。食品工厂设备应及时清洁,以避免因污染导致食源性病原体爆发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baef/8305040/7470b2f52aab/microorganisms-09-01534-g001.jpg

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