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Patterned biofilm formation reveals a mechanism for structural heterogeneity in bacterial biofilms

机译:模式化的生物膜形成揭示了细菌生物膜中结构异质性的机制

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摘要

Bacterial biofilms are ubiquitous and are the major cause of chronic infections in humans and persistent biofouling in industry. Despite the significance of bacterial biofilms, the mechanism of biofilm formation and associated drug tolerance is still not fully understood. A major challenge in biofilm research is the intrinsic heterogeneity in the biofilm structure, which leads to temporal and spatial variation in cell density and gene expression. To understand and control such structural heterogeneity, surfaces with patterned functional alkanthiols were used in this study to obtain Escherichia coli cell clusters with systematically varied cluster size and distance between clusters. The results from quantitative imaging analysis revealed an interesting phenomenon in which multicellular connections can be formed between cell clusters depending on the size of interacting clusters and the distance between them. In addition, significant differences in patterned biofilm formation were observed between wild-type E. coli RP437 and some of its isogenic mutants, indicating that certain cellular and genetic factors are involved in interactions among cell clusters. In particular, autoinducer-2-mediated quorum sensing was found to be important. Collectively, these results provide missing information that links cell-to-cell signaling and interaction among cell clusters to the structural organization of bacterial biofilms.
机译:细菌生物膜无处不在,是人类慢性感染和工业上持续性生物污染的主要原因。尽管细菌生物膜具有重要意义,但生物膜形成的机制和相关的药物耐受性仍不完全清楚。生物膜研究的主要挑战是生物膜结构的固有异质性,这会导致细胞密度和基因表达的时空变化。为了理解和控制这种结构的异质性,本研究使用具有图案化功能性烷硫醇的表面来获得具有系统变化的簇大小和簇之间距离的大肠杆菌细胞簇。定量成像分析的结果揭示了一个有趣的现象,其中取决于相互作用簇的大小和它们之间的距离,可以在细胞簇之间形成多细胞连接。此外,在野生型大肠杆菌RP437及其一些同基因突变体之间观察到图案化生物膜形成的显着差异,表明某些细胞和遗传因素参与细胞簇之间的相互作用。特别地,发现自动诱导物2介导的群体感应是重要的。总的来说,这些结果提供了缺失的信息,这些信息将细胞间信号传递以及细胞簇之间的相互作用与细菌生物膜的结构组织联系起来。

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