Institut Pasteur, 28 rue du Docteur Roux, Paris, France.
Inria Paris, 2 rue Simone Iff, Paris, France.
Nat Commun. 2022 Jun 11;13(1):3363. doi: 10.1038/s41467-022-31033-9.
Small-scale, low-cost bioreactors provide exquisite control of environmental parameters of microbial cultures over long durations. Their use is gaining popularity in quantitative systems and synthetic biology. However, existing setups are limited in their measurement capabilities. Here, we present ReacSight, a strategy to enhance bioreactor arrays for automated measurements and reactive experiment control. ReacSight leverages low-cost pipetting robots for sample collection, handling and loading, and provides a flexible instrument control architecture. We showcase ReacSight capabilities on three applications in yeast. First, we demonstrate real-time optogenetic control of gene expression. Second, we explore the impact of nutrient scarcity on fitness and cellular stress using competition assays. Third, we perform dynamic control of the composition of a two-strain consortium. We combine custom or chi.bio reactors with automated cytometry. To further illustrate ReacSight's genericity, we use it to enhance plate-readers with pipetting capabilities and perform repeated antibiotic treatments on a bacterial clinical isolate.
小规模、低成本的生物反应器可长时间对微生物培养物的环境参数进行精细控制。它们在定量系统和合成生物学中的应用越来越受欢迎。然而,现有的设置在测量能力方面存在局限性。在这里,我们提出了 ReacSight,这是一种用于增强生物反应器阵列以实现自动化测量和反应性实验控制的策略。ReacSight 利用低成本的移液机器人进行样本收集、处理和加载,并提供灵活的仪器控制架构。我们在酵母的三个应用中展示了 ReacSight 的功能。首先,我们展示了实时光遗传学控制基因表达。其次,我们使用竞争测定法探索了营养物质匮乏对适应性和细胞应激的影响。第三,我们对两株菌联合体的组成进行了动态控制。我们将定制或 chi.bio 生物反应器与自动化细胞计数相结合。为了进一步说明 ReacSight 的通用性,我们使用它来增强具有移液功能的板读数器,并对细菌临床分离物进行重复抗生素处理。