Cooley Benjamin J, Thatcher Travis W, Hashmi Sara M, L'her Guillaume, Le Henry H, Hurwitz Daniel A, Provenzano Daniele, Touhami Ahmed, Gordon Vernita D
Center for Nonlinear Dynamics and Department of Physics, University of Texas at Austin, 2515 Speedway, C1610, Austin, TX 78712, USA.
Soft Matter. 2013 Apr 14;9(14):3871-3876. doi: 10.1039/C3SM27638D.
Biofilms are surface-mounted, multicellular communities of microbes. Biofilms are often associated with chronic infections that resist treatment, evade the immune system, and damage host tissue. An essential characteristic of the biofilm state is that constituent organisms are bound in a polymeric matrix. This matrix gives the system spatial structure and clusters bacteria near each other, facilitating intercellular interactions. The strain PAO1 is widely studied as a model biofilm-forming organism. The polymeric matrix of PAO1 biofilms is dominated by two bacteria-produced extracellular polymers, Pel and Psl. We use a combination of optical and atomic force microscopy to examine the roles of these polymers in very early biofilm development. In agreement with other researchers, we find that Psl mediates strong attachment to a glass surface. We find that Pel alone can mediate some attachment, but not as permanent as that mediated by Psl. Unexpectedly, we find that Pel promotes symmetric attachment, in the form of rod-shaped bacteria lying down flat on the surface, and that the presence of Pel makes attachment forces more short-ranged than they are with Psl alone. We suggest that these effects may result from synergistic interactions of Pel with the Psl polymeric matrix.
生物膜是附着于表面的微生物多细胞群落。生物膜通常与抵抗治疗、逃避免疫系统并损害宿主组织的慢性感染有关。生物膜状态的一个基本特征是组成生物体被束缚在聚合物基质中。这种基质赋予系统空间结构,并使细菌彼此靠近聚集,促进细胞间相互作用。菌株PAO1作为一种形成生物膜的典型生物体被广泛研究。PAO1生物膜的聚合物基质主要由两种细菌产生的细胞外聚合物Pel和Psl组成。我们结合使用光学显微镜和原子力显微镜来研究这些聚合物在生物膜早期发育中的作用。与其他研究人员的结果一致,我们发现Psl介导与玻璃表面的强附着。我们发现单独的Pel也能介导一些附着,但不如Psl介导的附着持久。出乎意料的是,我们发现Pel促进对称附着,其形式为杆状细菌平躺在表面,并且Pel的存在使附着力比仅存在Psl时的范围更短。我们认为这些效应可能是由于Pel与Psl聚合物基质的协同相互作用所致。