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首页> 外文期刊>Journal of Theoretical Biology >Development of the Pseudomonas aeruginosa mushroom morphology and cavity formation by iron-starvation: A mathematical modeling study
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Development of the Pseudomonas aeruginosa mushroom morphology and cavity formation by iron-starvation: A mathematical modeling study

机译:铁饥饿导致铜绿假单胞菌蘑菇形态和空洞形成的数学模型研究

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We present a mathematical model of mushroom-like architecture and cavity formation in Pseudomonas aeruginosa biofilms. We demonstrate that a proposed disparity in internal friction between the stalk and cap extracellular polymeric substances (EPS) leads to spatial variation in volumetric expansion sufficient to produce the mushroom morphology. The capability of diffusible signals to induce the formation of a fluid-filled cavity within the cap is then investigated. We assume that conversion of bacteria to the planktonic state within the cap occurs in response to the accumulation or depletion of some signal molecule. We (a) show that neither simple nutrient starvation nor signal production by one or more subpopulations of bacteria is sufficient to trigger localized cavity formation. We then (b) demonstrate various hypothetical scenarios that could result in localized cavity formation. Finally, we (c) model iron availability as a detachment signal and show simulation results demonstrating cavity formation by iron starvation. We conclude that iron availability is a plausible mechanism by which fluid-filled cavities form in the cap region of mushroom-like structures.
机译:我们提出了蘑菇状建筑和铜绿假单胞菌生物膜中的腔形成的数学模型。我们证明,在茎和瓶盖细胞外聚合物质(EPS)之间的内部摩擦中提出的差异会导致体积膨胀的空间变化,足以产生蘑菇形貌。然后研究了可扩散信号在帽内引起流体填充腔形成的能力。我们假设细菌在帽内向浮游状态的转化是响应某些信号分子的积累或消耗而发生的。我们(a)表明,一个或多个细菌亚群的简单营养缺乏或信号产生都不足以触发局部腔的形成。然后,我们(b)演示了可能导致局部空腔形成的各种假设情况。最后,我们(c)将铁的有效性模型化为脱离信号,并显示出模拟结果,表明铁饥饿导致的空洞形成。我们得出的结论是,铁的有效性是一种合理的机制,通过这种机制,在蘑菇状结构的帽盖区域会形成充满流体的空腔。

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