Grünberger Alexander, Probst Christopher, Helfrich Stefan, Nanda Arun, Stute Birgit, Wiechert Wolfgang, von Lieres Eric, Nöh Katharina, Frunzke Julia, Kohlheyer Dietrich
Forschungszentrum Jülich GmbH, IBG-1: Biotechnology, Jülich, 52425, Germany.
Cytometry A. 2015 Dec;87(12):1101-15. doi: 10.1002/cyto.a.22779. Epub 2015 Sep 8.
Cell-to-cell heterogeneity typically evolves due to a manifold of biological and environmental factors and special phenotypes are often relevant for the fate of the whole population but challenging to detect during conventional analysis. We demonstrate a microfluidic single-cell cultivation platform that incorporates several hundred growth chambers, in which isogenic bacteria microcolonies growing in cell monolayers are tracked by automated time-lapse microscopy with spatiotemporal resolution. The device was not explicitly developed for a specific organism, but has a very generic configuration suitable for various different microbial organisms. In the present study, we analyzed Corynebacterium glutamicum microcolonies, thereby generating complete lineage trees and detailed single-cell data on division behavior and morphology in order to demonstrate the platform's overall capabilities. Furthermore, the occurrence of spontaneously induced stress in individual C. glutamicum cells was investigated by analyzing strains with genetically encoded reporter systems and optically visualizing SOS response. The experiments revealed spontaneous SOS induction in the absence of any external trigger comparable to results obtained by flow cytometry (FC) analyzing cell samples from conventional shake flask cultivation. Our microfluidic setup delivers detailed single-cell data with spatial and temporal resolution; complementary information to conventional FC results.
细胞间的异质性通常是由多种生物和环境因素演变而来的,特殊的表型往往与整个群体的命运相关,但在传统分析过程中却难以检测到。我们展示了一种微流控单细胞培养平台,该平台包含数百个生长室,通过具有时空分辨率的自动延时显微镜对生长在细胞单层中的同基因细菌微菌落进行跟踪。该设备并非专门为某一特定生物体开发,而是具有非常通用的配置,适用于各种不同的微生物。在本研究中,我们分析了谷氨酸棒杆菌微菌落,从而生成完整的谱系树以及关于分裂行为和形态的详细单细胞数据,以展示该平台的整体能力。此外,通过分析带有基因编码报告系统的菌株并对SOS反应进行光学可视化,研究了单个谷氨酸棒杆菌细胞中自发诱导应激的发生情况。实验揭示了在没有任何外部触发因素的情况下自发的SOS诱导,这与通过流式细胞术(FC)分析传统摇瓶培养的细胞样本所获得的结果相当。我们的微流控装置能够提供具有时空分辨率的详细单细胞数据,这是对传统FC结果的补充信息。