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Two-step formation mechanism of Acetobacter cellulosic biofilm: synthesis of sparse and compact cellulose

机译:醋杆菌纤维素生物膜的两步形成机理:稀疏和致密纤维素的合成

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摘要

Classical studies concerning "Acetobacter xylinum" focus on bacterial cellulose "BC" yield and rate in broth, after a long period of incubation (7-14 days). Such observations do not highlight bacterial physiology in the first incubation hours and its impact on BC production. In this study, the growth of a wild strain of Acetobacter was monitored in the first incubation hours. We showed the presence of two different physiologies; the first extends from the incubation moment till the formation of a sparse BC. Sparse BC modifies surface viscosity, and stabilizes hydrodynamic conditions to initiate compact BC production that marks the second physiology. Two containers, of different shapes, were used to confirm our findings, one of which is a culture tube with high drift currents on the broth-air interface, and the other is a conical flask with more stable hydrodynamic conditions at the culture's surface. We showed that Acetobacter always follows two physiologies independent of the container shape. Logistic model, FTIR, XRD and SEM analysis are used to confirm the results.
机译:经过长时间孵育(7-14天)后,有关“木醋杆菌”的经典研究集中于肉汤中细菌纤维素“ BC”的产量和比率。这样的观察并没有在最初的孵育小时中突出细菌的生理及其对细菌产生的影响。在这项研究中,在最初的孵育小时中监测了醋杆菌野生菌株的生长。我们展示了两种不同的生理学的存在;第一个阶段从孵化阶段一直延伸到稀疏的BC形成。稀疏的BC可以改变表面粘度,并稳定流体动力学条件,从而启动紧凑的BC生产,这标志着第二种生理学。使用了两个不同形状的容器来确认我们的发现,其中一个是在培养液-空气界面上具有高漂移电流的培养管,另一个是在培养液表面具有更稳定水动力条件的锥形烧瓶。我们显示醋杆菌始终遵循两种生理学,而与容器的形状无关。使用逻辑模型,FTIR,XRD和SEM分析来确认结果。

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