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首页> 外文期刊>Biotechnology Progress >Design of Growth-Dependent Biosensors Based on Destabilized GFP for the Detection of Physiological Behavior of Escherichia coli in Heterogeneous Bioreactors
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Design of Growth-Dependent Biosensors Based on Destabilized GFP for the Detection of Physiological Behavior of Escherichia coli in Heterogeneous Bioreactors

机译:基于不稳定GFP的生长依赖性生物传感器的设计,用于检测异构生物反应器中大肠杆菌的生理行为

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In this work, we present the design and characterization of Green Fluorescent Protein (GFP)-based reporter systems designed to describe cellular activity in "complex," heterogeneous bioreactors. The reporter systems consist of Escherichia coli strains carrying growth dependent promoters fused to genes expressing stable and unstable variants of GFP, respectively. The response of Escherichia coli cells to transient exposure to glucose was studied in a two-compartment scale down bioreactor (SDR) consisting of a well-stirred tank reactor (STR) connected to a plug-flow reactor (PFR). Such a SDR system is employed to mimic the situation of high glucose concentration and oxygen limitation that often encountered in large-scale, fed-batch bioreactors and the response of E. coli was simulated by continuously pumping microbial cells from STR to the PFR. We found that repeated addition of concentrated glucose pulses with varied frequency at the entrance of the PFR had consequences on strain physiological behavior. The GFP expressions were significantly marked after 10 h of cultivation in STR (control reactor) and SDR, whereas, growth rates were rather similar. Additional experiments in chemostat with programmed glucose perturbation suggested that the activities of the promoters were linked with the substrate limitation signal. Taken together with immunoblot analysis, we suppose protein leakage is responsible for the overex-pression of fis and the related promoters, such as rrnB in this case study, but additional works are required in order to confirm this relationship. This investigation is useful for a better understanding of the fast dynamic phenomena occurring in heterogeneous large-scale bioreactors.
机译:在这项工作中,我们介绍了基于绿色荧光蛋白(GFP)的报告系统的设计和表征,该报告系统旨在描述“复杂的”异质生物反应器中的细胞活性。报告系统由携带生长依赖性启动子的大肠杆菌菌株组成,所述启动子与分别表达GFP稳定和不稳定变体的基因融合。在两室规模的生物反应器(SDR)中研究了大肠杆菌细胞对短暂暴露于葡萄糖的反应,该反应器由一个搅拌良好的罐式反应器(STR)和一个活塞流反应器(PFR)组成。这种SDR系统用于模拟大规模补料分批生物反应器中经常遇到的高葡萄糖浓度和氧气限制的情况,并通过将微生物细胞从STR连续泵送到PFR中来模拟大肠杆菌的反应。我们发现,在PFR的入口反复添加频率变化的浓缩葡萄糖脉冲会对菌株的生理行为产生影响。在STR(对照反应器)和SDR中培养10 h后,GFP的表达明显增加,而生长速度却相当相似。在具有程序化葡萄糖扰动的恒化器中进行的其他实验表明,启动子的活性与底物限制信号相关。结合免疫印迹分析,我们假设蛋白质泄漏是导致fis和相关启动子(如rrnB)过度表达的原因,但在本案例研究中,还需要其他工作才能证实这种关系。这项研究对于更好地了解异质大规模生物反应器中发生的快速动力学现象很有用。

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