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首页> 外文期刊>International Journal of Food Microbiology >Initial adhesion of Listeria monocytogenes to fine polished stainless steel under flow conditions is determined by prior growth conditions.
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Initial adhesion of Listeria monocytogenes to fine polished stainless steel under flow conditions is determined by prior growth conditions.

机译:在流动条件下,单核细胞增生性李斯特菌与细抛光不锈钢的初始粘附力取决于先前的生长条件。

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Listeria monocytogenes is a food-borne pathogen known to persist in food production environments, where it is able to attach and form biofilms, potentially contaminating food products ready for consumption. In this study the first step in the establishment of L. monocytogenes in a food-processing environment was examined, namely the initial adhesion to stainless steel under specific dynamic flow conditions. It was found that the intrinsic ability of L. monocytogenes to adhere to solid surfaces under flow conditions is dependent on nutrient availability. The addition of L-leucine to the growth medium altered the fatty acid composition of the L. monocytogenes cells and increased adhesion. The growth conditions resulting in the highest adhesion (growth medium with added glucose) had cells with the highest electron donating and lowest electron accepting properties, whereas growth conditions resulting in lowest adhesion (growth medium with added mannose) had cells with the lowest electron donating properties and highest electron accepting properties. The highest and lowest adhesion conditions correlated with differences in expression of cell surface protein of L. monocytogenes and among these the autolysin amidase (Ami). This study implies that food composition influences the adhesion of L. monocytogenes to solid surfaces during dynamic flow conditions
机译:单核细胞增生李斯特菌是一种食源性病原体,已知会在食品生产环境中持续存在,在那里它能够附着并形成生物膜,从而可能污染准备食用的食品。在这项研究中,研究了在食品加工环境中建立单核细胞增生李斯特氏菌的第一步,即在特定的动态流动条件下对不锈钢的初始附着力。发现单核细胞增生李斯特氏菌在流动条件下粘附于固体表面的内在能力取决于养分的利用率。向生长培养基中添加L-亮氨酸改变了单核细胞增生李斯特氏菌细胞的脂肪酸组成并增加了粘附。导致粘附力最高的生长条件(添加葡萄糖的生长培养基)具有最高的电子给予和最低的电子接受性能的细胞,而导致粘附力最低的生长条件(添加了甘露糖的生长培养基)的细胞具有最高的供电子性能。和最高的电子接受性能。最高和最低的粘附条件与单核细胞增生李斯特菌细胞表面蛋白表达的差异有关,其中包括自溶素酰胺酶(Ami)。这项研究表明食物成分在动态流动条件下会影响单核细胞增生李斯特氏菌对固体表面的粘附

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