Lahaye Elodie, Aubry Thierry, Fleury Vincent, Sire Olivier
Laboratoire des Polymères, Propriétés aux Interfaces et Composites, Université de Bretagne-Sud, Campus de Tohannic, BP573 56017 Vannes Cedex, France.
Biomacromolecules. 2007 Apr;8(4):1228-35. doi: 10.1021/bm070115w. Epub 2007 Mar 14.
Following the analysis of the biochemical and functional properties of the P. mirabilis extra cellular matrix performed in the first part of this study, the viscoelasticity of an actively growing colony was investigated in relation to water activity. The results demonstrate that the P. mirabilis colony exhibits a marked viscoelastic character likely due to both cell rafts and exoproduct H-bond networks. Besides, the water loss by evaporation during migration has been measured, whereas the experimental determination of the water diffusion coefficient in agar has allowed us to estimate the net water influx at the agar/colony interface. These data drive us to propose that a periodic increase of the water activity at the colony's periphery, mainly due to the drastic surface to volume ratio increase associated with swarming, causes the periodic and synchronous cessation of migration through the dissociation of exoproduct networks, which in turn strongly alters the matrix viscoelasticity.
在本研究第一部分对奇异变形杆菌细胞外基质的生化和功能特性进行分析之后,研究了活跃生长菌落的粘弹性与水分活度的关系。结果表明,奇异变形杆菌菌落表现出明显的粘弹性特征,这可能是由于细胞筏和胞外产物氢键网络共同作用的结果。此外,还测量了迁移过程中因蒸发导致的水分流失,而通过实验测定琼脂中的水扩散系数,使我们能够估算琼脂/菌落界面处的净水分流入量。这些数据促使我们提出,菌落周边水分活度的周期性增加,主要是由于与群体游动相关的表面积与体积比急剧增加,导致胞外产物网络解离,从而使迁移周期性同步停止,进而强烈改变基质的粘弹性。