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Germination and Growth Analysis of Streptomyces lividans at the Single-Cell Level Under Varying Medium Compositions

机译:变质培养基下单链青霉链霉菌的萌发和生长分析

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摘要

Quantitative single-cell cultivation has provided fundamental contributions to our understanding of heterogeneity among industrially used microorganisms. Filamentous growing Streptomyces species are emerging platform organisms for industrial production processes, but their exploitation is still limited due to often reported high batch-to-batch variations and unexpected growth and production differences. Population heterogeneity is suspected to be one responsible factor, which is so far not systematically investigated at the single-cell level. Novel microfluidic single-cell cultivation devices offer promising solutions to investigate these phenomena. In this study, we investigated the germination and growth behavior of Streptomyces lividans TK24 under varying medium compositions on different complexity levels (i.e., mycelial growth, hyphal growth and tip elongation) on single-cell level. Our analysis reveals a remarkable stability within growth and germination of spores and early mycelium development when exposed to constant and defined environments. We show that spores undergo long metabolic adaptation processes of up to > 30 h to adjust to new medium conditions, rather than using a “persister” strategy as a possibility to cope with rapidly changing environments. Due to this uniform behavior, we conclude that S. lividans can be cultivated quite robustly under constant environmental conditions as provided by microfluidic cultivation approaches. Failure and non-reproducible cultivations are thus most likely to be found in less controllable larger-scale cultivation workflows and as a result of environmental gradients within large-scale cultivations.
机译:单细胞定量培养为我们对工业用微生物异质性的理解提供了基础性的贡献。丝状生长的链霉菌属物种是用于工业生产过程的新兴平台生物,但由于经常报道的批次间差异很大以及意想不到的生长和产量差异,其开发仍然受到限制。人口异质性被怀疑是一个负责任的因素,到目前为止,尚未在单细胞水平上进行系统的研究。新型微流单细胞培养设备提供了有前途的解决方案,以研究这些现象。在这项研究中,我们研究了在单细胞水平上,在不同复杂程度(即菌丝体生长,菌丝生长和尖端伸长)下,不同浓度的培养基组成下,链霉菌链霉菌TK24的发芽和生长行为。我们的分析表明,当暴露于恒定和特定的环境中时,孢子的生长和萌发以及菌丝的早期发育具有显着的稳定性。我们表明,孢子会经历长达30小时以上的长时间代谢适应过程,以适应新的培养基条件,而不是使用“ persister”策略作为应对迅速变化的环境的可能性。由于这种一致的行为,我们得出结论,在微流控培养方法所提供的恒定环境条件下,紫花链霉菌可以非常稳固地培养。因此,失败和不可复制的栽培最有可能在可控制性较低的大规模栽培工作流程中发现,并且是大规模栽培中环境梯度的结果。

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