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Synthetic quorum-sensing circuit to control consortial biofilm formation and dispersal in a microfluidic device

机译:合成群体感应电路可控制微流体装置中的生物体膜形成和扩散

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摘要

To utilize biofilms for chemical transformations in biorefineries they need to be controlled and replaced. Previously, we engineered the global regulator Hha and cyclic diguanylate-binding BdcA to create proteins that enable biofilm dispersal. Here we report a biofilm circuit that utilizes these two dispersal proteins along with a population-driven quorum-sensing switch. With this synthetic circuit, in a novel microfluidic device, we form an initial colonizer biofilm, introduce a second cell type (dispersers) into this existing biofilm, form a robust dual-species biofilm and displace the initial colonizer cells in the biofilm with an extracellular signal from the disperser cells. We also remove the disperser biofilm with a chemically induced switch, and the consortial population could tune. Therefore, for the first time, cells have been engineered that are able to displace an existing biofilm and then be removed on command allowing one to control consortial biofilm formation for various applications.
机译:为了将生物膜用于生物精炼厂的化学转化,需要对其进行控制和更换。以前,我们设计了全局调节剂Hha和环二鸟苷酸酯结合的BdcA,以创建能够生物膜分散的蛋白质。在这里,我们报告了利用这两种分散蛋白以及种群驱动的群体感应开关的生物膜电路。通过这种合成电路,在新型微流控设备中,我们形成了最初的定殖生物膜,将第二种细胞类型(分散剂)引入到现有的生物膜中,形成了坚固的双物种生物膜,并用细胞外的生物膜置换了生物膜中的初始定殖细胞来自分散器单元的信号。我们还使用化学诱导的开关去除了分散剂生物膜,财团的数量可以调整。因此,第一次,已经设计出能够置换现有生物膜的细胞,然后根据命令将其移除,从而允许人们控制各种生物体的生物膜形成。

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