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Lactobacillus plantarum: Effect of a protective biofilm on the surface of olives during storage

机译:植物乳杆菌:贮藏期间保护性生物膜对橄榄表面的影响

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摘要

The aim of the present study was to investigate the effect of Lactobacillus plantarum adhesion to the surface of olives during storage through studying the interaction between the surfaces of the olives and L. plantarum. The results showed that the total number of adherent L. plantarum increased exponentially from 1.2 × 106 to 1.3 × 108 cfu/g. Images obtained using environmental scanning electron microscopy (ESEM) after 4 days of storage revealed that the olive surface was covered with a uniform and compact biofilm constituted of L. plantarum and yeast. Physicochemical analysis of surface of L. plantarum revealed that it was hydrophilic (Giwi > 0 mJ/m2). The surface of the olives also appeared to be hydrophilic (Giwi = 3.28 mJ/m2). The electron-donor characteristics of the surfaces of L. plantarum and olive were γ = 53.1 mJ/m2 and γ = 28.1 mJ/m2, respectively. The formation of a protective biofilm of L. plantarum increased the hydrophilicity (from 3.28 to 46.14 mJ/m2) and the electron-donor capacity (from 28.1 to 67.2 mJ/m2) of the olive surface by 1 day of storage. Analysis of the impact of the biofilm that formed on the surface of the olives during storage showed a reduction in the content of undesirable planktonic microorganisms, such as fungi, which could have occurred due to competition for nutrients and oxygen or modifications in the physicochemical properties of the olives. Thus, coating the surface of olives with a natural material, such as L. plantarum, may be a first step in developing strategies to prevent their microbial colonization.
机译:本研究的目的是通过研究橄榄表面和植物乳杆菌之间的相互作用来研究植物乳杆菌粘附在橄榄表面的影响。结果表明,附着的植物乳杆菌总数从1.2×10 6 呈指数增加至1.3×10 8 cfu / g。储存4天后,使用环境扫描电子显微镜(ESEM)获得的图像显示,橄榄表面上覆盖着由植物乳杆菌和酵母组成的均匀而紧密的生物膜。植物乳杆菌表面的理化分析表明它是亲水的(Giwi> 0mJ / m 2 )。橄榄的表面似乎也很亲水(Giwi = 3.28 mJ / m 2 )。植物乳杆菌和橄榄表面的电子供体特征为γ- = 53.1 mJ / m 2 和γ- = 28.1mJ / m 2 。植物乳杆菌保护性生物膜的形成增加了亲水性(从3.28增至46.14 mJ / m 2 )和电子给体容量(从28.1增至67.2 mJ / m 2

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