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Rhamnolipid Surfactant Production Affects Biofilm Architecture in Pseudomonas aeruginosa PAO1

机译:鼠李糖脂表面活性剂的生产影响铜绿假单胞菌PAO1中的生物膜结构。

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In response to certain environmental signals, bacteria will differentiate from an independent free-living mode of growth and take up an interdependent surface-attached existence. These surface-attached microbial communities are known as biofilms. In flowing systems where nutrients are available, biofilms can develop into elaborate three-dimensional structures. The development of biofilm architecture, particularly the spatial arrangement of colonies within the matrix and the open areas surrounding the colonies, is thought to be fundamental to the function of these complex communities. Here we report a new role for rhamnolipid surfactants produced by the opportunistic pathogen Pseudomonas aeruginosa in the maintenance of biofilm architecture. Biofilms produced by mutants deficient in rhamnolipid synthesis do not maintain the noncolonized channels surrounding macrocolonies. We provide evidence that surfactants may be able to maintain open channels by affecting cell-cell interactions and the attachment of bacterial cells to surfaces. The induced synthesis of rhamnolipids during the later stages of biofilm development (when cell density is high) implies an active mechanism whereby the bacteria exploit intercellular interaction and communication to actively maintain these channels. We propose that the maintenance of biofilm architecture represents a previously unrecognized step in the development of these microbial communities.
机译:响应某些环境信号,细菌将与独立的自由生存模式区分开,并占据相互依存的表面附着状态。这些表面附着的微生物群落被称为生物膜。在有营养的流动系统中,生物膜可以发展成精细的三维结构。生物膜结构的发展,特别是基质内菌落的空间布置以及菌落周围的开放区域,被认为是这些复杂群落功能的基础。在这里,我们报道了机会性病原体铜绿假单胞菌产生的鼠李糖脂表面活性剂在维持生物膜结构中的新作用。由鼠李糖脂合成不足的突变体产生的生物膜不能维持大菌落周围的非定殖通道。我们提供的证据表明,表面活性剂可能能够通过影响细胞与细胞之间的相互作用以及细菌细胞与表面的附着来维持开放通道。在生物膜发育的后期(当细胞密度高时)诱导的鼠李糖脂的合成暗示了一种主动机制,细菌可以利用这种机制利用细胞间的相互作用和通讯来主动维持这些通道。我们建议生物膜结构的维护代表了这些微生物群落发展中以前未被认识的步骤。

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