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The role of FLO11 in Saccharomyces cerevisiae biofilm development in a laboratory based flow-cell system

机译:FLO11在基于实验室的流通池系统中在酿酒酵母生物膜发育中的作用

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摘要

A role of the FLO11 in Saccharomyces cerevisiae biofilm development in a flow cell system was examined. We carried out an ectopic FLO11 expression in the wild type (wt) BY4741 strain that has low levels of endogenous FLO11 transcript. In contrast to the nonadhesive wt, the FLO11 overexpression strain (BY4741 FLO11(+)) readily adhered to both liquid-hydrophobic and liquid-hydrophilic solid interfaces and was able to grow as a biofilm monolayer in a flow system. Cellular features associated with FLO11 were examined and found to be consistent with the previous studies conducted in different strains of S. cerevisiae. When grown in suspended liquid culture, BY4741 FLO11(+) formed larger cellular aggregates (clumps), consisting of from five to 60 cells, and displayed an increased cell surface hydrophobicity, without changes in the cell size or growth rate, compared to wt. However, the invasive growth associated with FLO11 expression was not observed in BY4741 FLO11(+). The significance of these findings is discussed in the context of clinically and industrially relevant biofilms.
机译:检查了FLO11在流动细胞系统中酿酒酵母生物膜发育中的作用。我们在野生型(wt)BY4741菌株中进行了异位FLO11表达,该菌株的内源FLO11转录水平较低。与非粘合剂wt相比,FLO11过表达菌株(BY4741 FLO11(+))容易粘附到液体疏水和液体亲水的固体界面上,并能够在流动系统中作为生物膜单层生长。检查了与FLO11相关的细胞特征,发现其与先前在不同酿酒酵母菌株中进行的研究一致。当在悬浮液体培养物中生长时,BY4741 FLO11(+)形成了较大的细胞聚集体(团块),由5至60个细胞组成,并且与wt相比,细胞表面疏水性增加,而细胞大小或生长速率没有变化。但是,BY4741 FLO11(+)中未观察到与FLO11表达相关的侵袭性生长。在临床和工业上相关的生物膜的背景下讨论了这些发现的意义。

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