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Novel co-culture plate enables growth dynamic-based assessment of contact-independent microbial interactions

机译:新型共培养板能够基于生长动力学评估接触无关的微生物相互作用

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摘要

Interactions between microbes are central to the dynamics of microbial communities. Understanding these interactions is essential for the characterization of communities, yet challenging to accomplish in practice. There are limited available tools for characterizing diffusion-mediated, contact-independent microbial interactions. A practical and widely implemented technique in such characterization involves the simultaneous co-culture of distinct bacterial species and subsequent analysis of relative abundance in the total population. However, distinguishing between species can be logistically challenging. In this paper, we present a low-cost, vertical membrane, co-culture plate to quantify contact-independent interactions between distinct bacterial populations in co-culture via real-time optical density measurements. These measurements can be used to facilitate the analysis of the interaction between microbes that are physically separated by a semipermeable membrane yet able to exchange diffusible molecules. We show that diffusion across the membrane occurs at a sufficient rate to enable effective interaction between physically separate cultures. Two bacterial species commonly found in the cystic fibrotic lung, Pseudomonas aeruginosa and Burkholderia cenocepacia, were co-cultured to demonstrate how this plate may be implemented to study microbial interactions. We have demonstrated that this novel co-culture device is able to reliably generate real-time measurements of optical density data that can be used to characterize interactions between microbial species.
机译:微生物之间的相互作用是微生物群落动态的关键。了解这些相互作用对于表征社区至关重要,但在实践中却难以实现。表征扩散介导的,与接触无关的微生物相互作用的工具有限。在这种表征中,一种实用且广泛实施的技术涉及不同细菌物种的同时共培养以及随后对总种群中相对丰度的分析。但是,区分物种可能在逻辑上具有挑战性。在本文中,我们提出了一种低成本的垂直膜共培养板,可通过实时光密度测量定量共培养中不同细菌种群之间的接触独立相互作用。这些测量值可用于促进分析被半透膜物理隔离但能够交换可扩散分子的微生物之间的相互作用。我们表明跨膜扩散发生的速率足以使物理上分离的文化之间发生有效的相互作用。共同培养在囊性纤维化肺中常见的两种细菌,铜绿假单胞菌和伯克霍尔德氏菌,共同培养,以证明该板可用于研究微生物相互作用。我们已经证明,这种新型的共培养设备能够可靠地生成光学密度数据的实时测量结果,该数据可用于表征微生物物种之间的相互作用。

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