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首页> 外文期刊>Journal of applied microbiology >Quantification of the extracellular matrix of the Listeria monocytogenes biofilms of different phylogenic lineages with optimization of culture conditions.
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Quantification of the extracellular matrix of the Listeria monocytogenes biofilms of different phylogenic lineages with optimization of culture conditions.

机译:优化培养条件,对不同系统发生谱系的单核细胞增生李斯特菌生物膜的细胞外基质进行定量。

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Aims. The purpose of this study was to quantify the extracellular matrix of Listeria monocytogenes biofilm. A preliminary study was carried out to establish a relationship between phylogenetic lineage of 27 strains and their ability to form biofilm in various conditions. Methods and Results. Biofilm formation on microtitre plates of 27 strains of L. monocytogenes belonging to lineages I or II was evaluated in different conditions (two temperatures (37 and 22 degrees C) and two media (tryptone soy broth yeast extract medium (TSBYE) and MCDB 202 defined medium)) using crystal violet assay. Lineage II strains produced significantly more biofilm than lineage I strains. In microtitre plates assay, biofilm quantities were greater in MCDB 202 vs TSBYE medium (confirmed by scanning electron microscopy (SEM) analysis) and at 37 vs 22 degrees C. Cultivable bacteria from biofilm population on Petri dishes were enumerated in greater quantities in TSBYE than in MCDB 202 medium. The SEM investigation established that L. monocytogenes biofilms produce extracellular matrix in both media at 37 degrees C. The amount of exopolymers in the extracellular matrix and the pH values were significantly higher in TSBYE than in MCDB 202 medium. The exception was the ScottA strain that presented similar pH values and exopolymer contents in both media. Proteins were the most abundant exopolymer components, followed by DNA and polysaccharides. Conclusions. The interpretation of results of biofilm quantification was depending on the growth conditions, the viability of the bacteria and the analysis method. The quantities of proteins, DNA and polysaccharides were different according to the strains and the medium. Significance and Impact of the Study. This study screened the potential of a wide panel of L. monocytogenes strains to synthesize exopolymers in biofilm growing condition. The characterization of L. monocytogenes biofilm composition may help to develop new strategies to prevent the formation of biofilms and to remove the biofilms
机译:目的这项研究的目的是量化单核细胞增多性李斯特菌生物膜的细胞外基质。进行了初步研究,以建立27种菌株的系统谱系与其在各种条件下形成生物膜的能力之间的关系。方法和结果。在不同条件下(两种温度(37和22摄氏度)和两种培养基(rypto大豆肉汤酵母提取物培养基(TSBYE)和MCDB 202确定)在不同条件下评估了27种单核细胞增生李斯特氏菌27种单核细胞增生李斯特氏菌在微滴板上的生物膜形成培养基)),使用结晶紫分析法。谱系II菌株产生的生物膜明显多于谱系I菌株。在微量滴定板分析中,在MCDB 202和TSBYE培养基中(通过扫描电子显微镜(SEM)分析确认)以及在37和22摄氏度下,生物膜的数量更多。在TSBYE中,从陪替氏培养皿中计数的生物膜种群中可培养细菌的数量比在MCDB 202中。 SEM研究表明,单核细胞增生李斯特菌生物膜在两种培养基中均在37摄氏度下产生细胞外基质。TSBYE中细胞外基质中的外聚合物含量和pH值明显高于MCDB 202培养基。例外的是ScottA菌株,在两种培养基中均显示相似的pH值和外聚合物含量。蛋白质是最丰富的外聚合物成分,其次是DNA和多糖。结论。对生物膜定量结果的解释取决于生长条件,细菌的生存力和分析方法。蛋白质,DNA和多糖的数量因菌株和培养基而异。研究的意义和影响。这项研究筛选了广泛的单核细胞增生李斯特氏菌菌株在生物膜生长条件下合成外聚合物的潜力。单核细胞增生李斯特菌生物膜组成的表征可能有助于开发新的策略,以防止形成生物膜并去除生物膜

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