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Streptococcus gordonii Biofilm Formation: Identification of Genes that Code for Biofilm Phenotypes

机译:戈登链球菌生物膜形成:编码生物膜表型的基因的鉴定。

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摘要

Viridans streptococci, which include Streptococcus gordonii, are pioneer oral bacteria that initiate dental plaque formation. Sessile bacteria in a biofilm exhibit a mode of growth that is distinct from that of planktonic bacteria. Biofilm formation of S. gordonii Challis was characterized using an in vitro biofilm formation assay on polystyrene surfaces. The same assay was used as a nonbiased method to screen isogenic mutants generated by Tn916 transposon mutagenesis for defective biofilm formation. Biofilms formed optimally when bacteria were grown in a minimal medium under anaerobic conditions. Biofilm formation was affected by changes in pH, osmolarity, and carbohydrate content of the growth media. Eighteen biofilm-defective mutants of S. gordonii Challis were identified based on Southern hybridization with a Tn916-based probe and DNA sequences of the Tn916-flanking regions. Molecular analyses of these mutants showed that some of the genes required for biofilm formation are involved in signal transduction, peptidoglycan biosynthesis, and adhesion. These characteristics are associated with quorum sensing, osmoadaptation, and adhesion functions in oral streptococci. Only nine of the biofilm-defective mutants had defects in genes of known function, suggesting that novel aspects of bacterial physiology may play a part in biofilm formation. Further identification and characterization of biofilm-associated genes will provide insight into the molecular mechanisms of biofilm formation of oral streptococci.
机译:包括戈登链球菌在内的弧菌链球菌是引发牙菌斑形成的先驱口腔细菌。生物膜中的无细菌细菌表现出与浮游细菌不同的生长方式。使用体外在聚苯乙烯表面上的生物膜形成试验来表征戈氏链球菌的生物膜形成。相同的测定方法被用作无偏方法来筛选由Tn916转座子诱变产生的等基因突变体,以形成有缺陷的生物膜。当细菌在厌氧条件下在基本培养基中生长时,生物膜形成最佳。生物膜的形成受pH,渗透压和生长培养基中碳水化合物含量变化的影响。基于与基于Tn916的探针和Tn916侧翼区域的DNA序列的Southern杂交,鉴定了十八个S. gordonii Challis生物膜缺陷型突变体。这些突变体的分子分析表明,生物膜形成所需的一些基因与信号转导,肽聚糖的生物合成和粘附有关。这些特征与口腔链球菌中的群体感应,渗透适应和粘附功能有关。生物膜缺陷突变体中只有9个在已知功能的基因中存在缺陷,这表明细菌生理学的新方面可能在生物膜形成中起作用。生物膜相关基因的进一步鉴定和表征将提供对口腔链球菌生物膜形成的分子机制的深入了解。

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