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Induction of the yjbEFGH operon is regulated by growth rate and oxygen concentration

机译:yjbEFGH操纵子的诱导受生长速率和氧气浓度的调节

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The yjbEFGH operon of Escherichia coli was previously shown to be involved in exopolysaccharide production and induced during biofilm formation by osmotic stress; in this communication we investigate some of the factors taking part in its regulation. We show that induction of yjbF'::luxCDABE transcriptional fusion in response to osmotic shock is limited to the early growth phase of batch-grown cells, and is dictated by cell density in an oxygen-related manner: induction was maximal at low cell density and at high oxygen concentrations. The dependency on cell density and oxygen availability was verified in both batch and continuous culture, using either bioluminescence (luxCDABE) or beta-galactosidase (lacZ) genes as the reporter system. It is further shown that yjb is also induced by low specific growth rates, even in the absence of osmotic stress. Finally, it is demonstrated that induction of the yjbEFGH operon, though clearly a stress response, is not a part of the general stress regulon under the positive control of RpoS, as it is negatively affected by this sigma factor.
机译:先前显示,大肠杆菌的yjbEFGH操纵子参与胞外多糖的产生,并在渗透压引起的生物膜形成过程中被诱导。在本交流中,我们调查了参与其监管的一些因素。我们表明响应渗透压休克诱导yjbF':: luxCDABE转录融合仅限于分批生长的细胞的早期生长阶段,并由细胞密度以与氧有关的方式决定:在低细胞密度下诱导最大在高氧气浓度下使用生物发光(luxCDABE)或β-半乳糖苷酶(lacZ)基因作为报告系统,在分批和连续培养中均证实了对细胞密度和氧气利用率的依赖性。进一步表明,即使在没有渗透胁迫的情况下,yjb也由低比生长速率诱导。最后,证明了yjbEFGH操纵子的诱导,尽管显然是应激反应,但在RpoS的正向控制下,不是一般应激调节的一部分,因为它受此sigma因子的负面影响。

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