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Microfluidic study of the chemotactic response of Escherichia coli to amino acids signaling molecules and secondary metabolites

机译:大肠杆菌对氨基酸信号分子和次级代谢产物的趋化反应的微流研究

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摘要

Quorum sensing and chemotaxis both affect bacterial behavior on the population level. Chemotaxis shapes the spatial distribution of cells, while quorum sensing realizes a cell-density dependent gene regulation. An interesting question is if these mechanisms interact on some level: Does quorum sensing, a density dependent process, affect cell density itself via chemotaxis? Since quorum sensing often spans across species, such a feedback mechanism may also exist between multiple species. We constructed a microfluidic platform to study these questions. A flow-free, stable linear chemical gradient is formed in our device within a few minutes that makes it suitable for sensitive testing of chemoeffectors: we showed that the amino acid lysine is a weak chemoattractant for Escherichia coli, while arginine is neutral. We studied the effect of quorum sensing signal molecules of Pseudomonas aeruginosa on E. coli chemotaxis. Our results show that N-(3-oxododecanoyl)-homoserine lactone (oxo-C12-HSL) and N-(butryl)-homoserine lactone (C4-HSL) are attractants. Furthermore, we tested the chemoeffector potential of pyocyanin and pyoverdine, secondary metabolites under a quorum sensing control. Pyocyanin is proved to be a weak attractant while pyoverdine are repellent. We demonstrated the usability of the device in co-culturing experiments, where we showed that various factors released by P. aeruginosa affect the dynamic spatial rearrangement of a neighboring E. coli population, while surface adhesion of the cells is also modulated.
机译:群体感应和趋化性均会影响种群水平的细菌行为。趋化性塑造了细胞的空间分布,而群体感应实现了依赖细胞密度的基因调控。一个有趣的问题是这些机制是否在某种程度上相互作用:群体感应(一种依赖密度的过程)是否会通过趋化作用影响细胞本身的密度?由于仲裁感测通常跨物种,因此这种反馈机制也可能存在于多个物种之间。我们构建了一个微流体平台来研究这些问题。几分钟后,在我们的设备中形成了无流量且稳定的线性化学梯度,这使其适合化学效应的灵敏测试:我们证明了氨基酸赖氨酸对大肠杆菌是弱的化学吸引剂,而精氨酸是中性的。我们研究了铜绿假单胞菌的群体感应信号分子对大肠杆菌趋化性的影响。我们的结果表明,N-(3-氧十二烷酰基)-高丝氨酸内酯(oxo-C12-HSL)和N-(丁酰)-高丝氨酸内酯(C4-HSL)是引诱剂。此外,我们在群体感应控制下测试了花青素和吡over定,次生代谢物的化学效应潜力。事实证明,花青素是一种弱引诱剂,而泛磷定则具有驱避作用。我们证明了该设备在共培养实验中的可用性,在该实验中我们证明了铜绿假单胞菌释放的各种因素会影响邻近大肠杆菌群体的动态空间重排,同时细胞的表面粘附性也会受到调节。

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