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Methods for Characterizing the Co-development of Biofilm and Habitat Heterogeneity

机译:表征生物膜和生境异质性共同发展的方法

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摘要

Biofilms are surface-attached microbial communities that have complex structures and produce significant spatial heterogeneities. Biofilm development is strongly regulated by the surrounding flow and nutritional environment. Biofilm growth also increases the heterogeneity of the local microenvironment by generating complex flow fields and solute transport patterns. To investigate the development of heterogeneity in biofilms and interactions between biofilms and their local micro-habitat, we grew mono-species biofilms of Pseudomonas aeruginosa and dual-species biofilms of P. aeruginosa and Escherichia coli under nutritional gradients in a microfluidic flow cell. We provide detailed protocols for creating nutrient gradients within the flow cell and for growing and visualizing biofilm development under these conditions. We also present protocols for a series of optical methods to quantify spatial patterns in biofilm structure, flow distributions over biofilms, and mass transport around and within biofilm colonies. These methods support comprehensive investigations of the co-development of biofilm and habitat heterogeneity.
机译:生物膜是表面附着的微生物群落,具有复杂的结构并产生明显的空间异质性。生物膜的发育受到周围水流和营养环境的强烈调节。生物膜的生长还通过产生复杂的流场和溶质运移模式而增加了局部微环境的异质性。为了研究生物膜异质性的发展以及生物膜与其局部微生境之间的相互作用,我们在营养梯度下在微流控流通池中生长了铜绿假单胞菌的单物种生物膜以及铜绿假单胞菌和大肠杆菌的双物种生物膜。我们提供了在流通池内创建营养梯度以及在这些条件下生长和可视化生物膜发育的详细协议。我们还提出了一系列光学方法的协议,以量化生物膜结构中的空间模式,生物膜上的流量分布以及生物膜菌落周围和内部的质量转移。这些方法支持对生物膜和生境异质性共同发展的综合研究。

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