食品科学 ›› 2023, Vol. 44 ›› Issue (20): 107-118.doi: 10.7506/spkx1002-6630-20221101-010

• 生物工程 • 上一篇    下一篇

肉源大肠杆菌与假单胞菌混合生物被膜形成分析

季君珂,宓晓雨,袁杨洋,程宇,张文栋,张晨,江芸   

  1. (南京师范大学食品与制药工程学院,江苏 南京 210023)
  • 出版日期:2023-10-25 发布日期:2023-11-07
  • 基金资助:
    国家自然科学基金面上项目(32072287)

Analysis of Mixed-Species Biofilm Formation between Meat-Derived Escherichia coli and Pseudomonas

JI Junke, MI Xiaoyu, YUAN Yangyang, CHENG Yu, ZHANG Wendong, ZHANG Chen, JIANG Yun   

  1. (School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, China)
  • Online:2023-10-25 Published:2023-11-07

摘要: 为研究肉源大肠杆菌与假单胞菌混合被膜形成,首先采用微孔板结晶紫染色法评估肉源分离株生物被膜形成能力,进而探讨两种菌代表菌株组合混合被膜形成过程,分析被膜量、微观结构和胞外聚合物(extracellular polymeric substances,EPS)组成的动态变化,并采用实时聚合酶链式反应绝对定量方法分析相关成膜基因表达差异。结果表明,大肠杆菌与假单胞菌被膜形成能力均存在显著的菌株差异(P<0.05),其中强成膜能力菌株分别占25.81%和23.08%。不锈钢片平板计数结果显示2 个菌株组合(大肠杆菌菌株D4-18+假单胞菌菌株Y2-2 10、大肠杆菌菌株C-13+假单胞菌菌株Y2-1 1)的混合生物被膜的形成过程不同,并且在不同成膜时间两种菌的相互作用发生变化。共聚焦激光扫描显微镜观察发现微观结构也发生类似变化。混合被膜形成时EPS中蛋白质和多糖的分泌受到抑制,与两种单菌被膜的总EPS之和相比,混合成膜72 h和168 h蛋白质含量分别减少31%和48%,多糖含量分别减少38%和56%。基于单位菌数基因表达水平发现,浮游菌形成生物被膜后相关成膜基因的表达均显著上调(P<0.05);与单菌生物被膜相比,混合成膜时大肠杆菌papC和csgA基因表达水平在72 h和168 h极显著上调(P<0.01),而假单胞菌phoR和cbrA基因表达水平在72 h极显著下调(P<0.01)。基于单位面积基因绝对表达量发现,混合成膜时基因绝对表达量相比于单菌被膜发生不同程度变化。本研究可为揭示肉源腐败微生物混合被膜形成规律提供科学基础,为肉类生产加工中微生物风险评估及污染控制提供科学依据。

关键词: 肉源大肠杆菌;肉源假单胞菌;混合生物被膜;交互作用;基因表达

Abstract: This study aimed to explore mixed-species biofilm formation (BF) between meat-derived Escherichia coli and Pseudomonas. The biofilm-forming capacity of isolates was evaluated by means of microplate crystal violet staining and the process of mixed-species biofilm formation between representative strains was investigated. The dynamic changes of biofilm amount, microstructure and the composition of extracellular polymeric substances (EPS) were examined. Absolute quantitative real-time PCR was used to analyze the difference in the expression of BF-related genes. The results showed that there were significant inter-strain differences in the biofilm-forming capacity of E. coli and Pseudomonas (P < 0.05), in which the strains with strong biofilm-forming capacity accounted for 25.81% and 23.08%, respectively. The results of plate counting showed that the BF processes of E. coli D4-18 + Pseudomonas Y2-2 10, and E. coli C-13 + Pseudomonas Y2-1 1 were different on stainless steel sheet, and the interaction between the two species changed with BF time. Similar changes in the microstructure were observed by confocal laser scanning microscope (CLSM). The secretion of protein and polysaccharide in EPS was inhibited during mixed-species BF; the amount of protein decreased by 31% and 48%, respectively, and the amount of polysaccharide decreased by 38% and 56%, respectively, at 72 and 168 h of culture compared with the total EPS of the two single-species biofilms. The results of gene expression per unit cell number showed that the expression of BF-related genes was significantly up-regulated in the biofilm compared with the planktonic cells (P < 0.05). Compared with the single-species biofilm, the papC and csgA genes of E. coli in the mixed biofilm were significantly up-regulated at 72 and 168 h (P < 0.01), while the phoR and cbrA genes of Pseudomonas were significantly down-regulated at 72 h (P < 0.01). The absolute amount of genes expression per unit area in mixed-species BF changed compared with that in single-species BF. This study can provide a scientific basis for understanding the mixed-species BF of meat-derived spoilage microorganisms and for the risk assessment and control of microbial contamination in meat production and processing.

Key words: meat-derived Escherichia coli; meat-derived Pseudomonas; mixed-species biofilm; interaction; gene expression

中图分类号: