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芽孢杆菌介导枯草芽孢杆菌对空肠弯曲菌生物膜的抑制作用。

Bacillaene Mediates the Inhibitory Effect of Bacillus subtilis on Campylobacter jejuni Biofilms.

机构信息

Department of Food Science and Technology, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.

出版信息

Appl Environ Microbiol. 2021 May 26;87(12):e0295520. doi: 10.1128/AEM.02955-20.

Abstract

Biofilms are the predominant bacterial lifestyle and can protect microorganisms from environmental stresses. Multispecies biofilms can affect the survival of enteric pathogens that contaminate food products, and thus, investigating the underlying mechanisms of multispecies biofilms is essential for food safety and human health. In this study, we investigated the ability of the natural isolate Bacillus subtilis PS-216 to restrain Campylobacter jejuni biofilm formation and adhesion to abiotic surfaces as well as to disrupt preestablished C. jejuni biofilms. Using confocal laser scanning microscopy and colony counts, we demonstrate that the presence of B. subtilis PS-216 prevents C. jejuni biofilm formation, decreases growth of the pathogen by 4.2 log, and disperses 26-h-old preestablished C. jejuni biofilms. Furthermore, the coinoculation of B. subtilis and C. jejuni interferes with the adhesion of C. jejuni to abiotic surfaces, reducing it by 2.4 log. We also show that contact-independent mechanisms contribute to the inhibitory effect of B. subtilis PS-216 on C. jejuni biofilm. Using B. subtilis mutants in genes coding for nonribosomal peptides and polyketides revealed that bacillaene significantly contributes to the inhibitory effect of B. subtilis PS-216. In summary, we show a strong potential for the use of B. subtilis PS-216 against C. jejuni biofilm formation and adhesion to abiotic surfaces. Our research could bring forward novel applications of B. subtilis in animal production and thus contribute to food safety. Campylobacter jejuni is an intestinal commensal in animals (including broiler chickens) but also the most frequent cause of bacterial foodborne infection in humans. This pathogen forms biofilms which enhance survival of C. jejuni in food processing and thus threaten human health. Probiotic bacteria represent a potential alternative in the prevention and control of foodborne infections. The beneficial bacterium Bacillus subtilis has an excellent probiotic potential to reduce C. jejuni in the animal gastrointestinal tract. However, data on the effect of B. subtilis on C. jejuni biofilms are scarce. Our study shows that the B. subtilis natural isolate PS-216 prevents adhesion to the abiotic surfaces and the development of submerged C. jejuni biofilm during coculture and destroys the preestablished C. jejuni biofilm. These insights are important for development of novel applications of B. subtilis that will reduce the use of antibiotics in human and animal health and increase productivity in animal breeding.

摘要

生物膜是细菌的主要生活方式,可以保护微生物免受环境压力的影响。多物种生物膜会影响污染食品的肠道病原体的存活,因此,研究多物种生物膜的潜在机制对于食品安全和人类健康至关重要。在这项研究中,我们研究了天然分离株枯草芽孢杆菌 PS-216 抑制空肠弯曲菌生物膜形成和附着在非生物表面以及破坏预先形成的空肠弯曲菌生物膜的能力。使用共聚焦激光扫描显微镜和菌落计数,我们证明枯草芽孢杆菌 PS-216 的存在可以阻止空肠弯曲菌生物膜的形成,使病原体的生长减少 4.2 对数,并且可以分散 26 小时的预先形成的空肠弯曲菌生物膜。此外,枯草芽孢杆菌和空肠弯曲菌的共接种会干扰空肠弯曲菌对非生物表面的附着,减少 2.4 对数。我们还表明,接触非依赖性机制有助于枯草芽孢杆菌 PS-216 对空肠弯曲菌生物膜的抑制作用。使用枯草芽孢杆菌基因编码非核糖体肽和聚酮的突变体表明,杆菌肽对枯草芽孢杆菌 PS-216 的抑制作用有重要贡献。总之,我们展示了枯草芽孢杆菌 PS-216 对空肠弯曲菌生物膜形成和附着在非生物表面的强大潜力。我们的研究可以为枯草芽孢杆菌在动物生产中的新应用带来新的应用,从而为食品安全做出贡献。空肠弯曲菌是空肠弯曲菌在动物(包括肉鸡)中的肠道共生菌,但也是人类中最常见的细菌性食源性感染的原因。这种病原体形成生物膜,增强了空肠弯曲菌在食品加工中的生存能力,从而威胁到人类健康。益生菌是预防和控制食源性感染的潜在替代品。有益细菌枯草芽孢杆菌具有减少动物胃肠道中空肠弯曲菌的优异益生菌潜力。然而,关于枯草芽孢杆菌对空肠弯曲菌生物膜的影响的数据很少。我们的研究表明,枯草芽孢杆菌天然分离株 PS-216 可以防止在共培养过程中附着在非生物表面和发展水下空肠弯曲菌生物膜,并破坏预先形成的空肠弯曲菌生物膜。这些发现对于开发枯草芽孢杆菌的新应用具有重要意义,这些新应用将减少人类和动物健康中抗生素的使用,并提高动物养殖的生产力。

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