Integrated identification of growth pattern and taxon of bacterium in gut microbiota via confocal fluorescence imaging-oriented single-cell sequencing.

IF 4.5 Q1 MICROBIOLOGY mLife Pub Date : 2022-09-26 eCollection Date: 2022-09-01 DOI:10.1002/mlf2.12041
Juan Gao, Di Sun, Bei Li, Chaoyong Yang, Wei Wang
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Abstract

Despite the fast progress in our understanding of the complex functions of gut microbiota, it is still challenging to directly investigate the in vivo microbial activities and processes on an individual cell basis. To gain knowledge of the indigenous growth/division patterns of the diverse mouse gut bacteria with a relatively high throughput, here, we propose an integrative strategy, which combines the use of fluorescent probe labeling, confocal imaging with single-cell sorting, and sequencing. Mouse gut bacteria sequentially labeled by two fluorescent d-amino acid probes in vivo were first imaged by confocal microscopy to visualize their growth patterns, which can be unveiled by the distribution of the two fluorescence signals on each bacterium. Bacterial cells of interest on the imaging slide were then sorted using a laser ejection equipment, and the collected cells were then sequenced individually to identify their taxa. Our strategy allows integrated acquirement of the growth pattern knowledge of a variety of gut bacteria and their genomic information on a single-cell basis, which should also have great potential in studying many other complex bacterial systems.

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通过以共焦点荧光成像为导向的单细胞测序技术综合鉴定肠道微生物群中细菌的生长模式和分类群。
尽管我们对肠道微生物群复杂功能的认识取得了快速进展,但直接研究单个细胞的体内微生物活动和过程仍具有挑战性。为了以相对较高的通量了解小鼠肠道细菌的本地生长/分裂模式,我们在此提出了一种综合策略,将荧光探针标记、共焦成像与单细胞分选和测序结合起来使用。首先用共聚焦显微镜对在体内用两种荧光 d- 氨基酸探针顺序标记的小鼠肠道细菌进行成像,以观察它们的生长模式,这可以通过两种荧光信号在每个细菌上的分布来揭示。然后使用激光弹射设备对成像载玻片上感兴趣的细菌细胞进行分类,再对收集到的细胞进行单独测序,以确定它们的类群。我们的策略可以在单细胞的基础上综合获取多种肠道细菌的生长模式知识及其基因组信息,这在研究许多其他复杂的细菌系统时也会大有可为。
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