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Hypothesis for the Role of Nutrient Starvation in Biofilm Detachment

机译:营养缺乏在生物膜分离中作用的假说

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A combination of experimental and theoretical approaches was used to investigate the role of nutrient starvation as a potential trigger for biofilm detachment. Experimental observations of detachment in a variety of biofilm systems were made with pure cultures of Pseudomonas aeruginosa. These observations indicated that biofilms grown under continuous-flow conditions detached after flow was stopped, that hollow cell clusters were sometimes observed in biofilms grown in flow cells, and that lysed cells were apparent in the internal strata of colony biofilms. When biofilms were nutrient starved under continuous-flow conditions, detachment still occurred, suggesting that starvation and not the accumulation of a metabolic product was responsible for triggering detachment in this particular system. A cellular automata computer model of biofilm dynamics was used to explore the starvation-dependent detachment mechanism. The model predicted biofilm structures and dynamics that were qualitatively similar to those observed experimentally. The predicted features included centrally located voids appearing in sufficiently large cell clusters, gradients in growth rate within these clusters, and the release of most of the biofilm with simulated stopped-flow conditions. The model was also able to predict biofilm sloughing resulting solely from this detachment mechanism. These results support the conjecture that nutrient starvation is an environmental cue for the release of microbes from a biofilm.
机译:实验方法和理论方法的组合被用来研究营养不足作为生物膜分离的潜在触发因素的作用。用铜绿假单胞菌的纯培养物在各种生物膜系统中分离的实验观察。这些观察结果表明,在停止流动后在连续流动条件下生长的生物膜分离,在流动细胞中生长的生物膜中有时观察到中空细胞簇,并且在菌落生物膜的内部层中可见裂解的细胞。当生物膜在连续流动的条件下营养缺乏时,仍然发生分离,这表明饥饿而不是代谢产物的积累是触发特定系统中分离的原因。细胞膜生物膜动力学的自动机计算机模型被用来探索饥饿依赖的脱离机制。该模型预测的生物膜结构和动力学在质量上与实验观察到的相似。预测的特征包括出现在足够大的细胞簇中的居中空隙,这些簇中生长速率的梯度以及在模拟的停流条件下大多数生物膜的释放。该模型还能够预测仅由这种分离机制引起的生物膜脱落。这些结果支持了这样的推测,即营养不足是从生物膜释放微生物的环境提示。

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