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Flexible dynamics of two quorum-sensing coupled repressilators

机译:两个频率传感耦合压抑器的灵活动态

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Genetic oscillators play important roles in cell life regulation. The regulatory efficiency usually depends strongly on the emergence of stable collective dynamic modes, which requires designing the interactions between genetic networks. We investigate the dynamics of two identical synthetic genetic repressilators coupled by an additional plasmid which implements quorum sensing (QS) in each network thereby supporting global coupling. In a basic genetic ring oscillator network in which three genes inhibit each other in unidirectional manner, QS stimulates the transcriptional activity of chosen genes providing for competition between inhibitory and stimulatory activities localized in those genes. The “promoter strength”, the Hill cooperativity coefficient of transcription repression, and the coupling strength, i.e., parameters controlling the basic rates of genetic reactions, were chosen for extensive bifurcation analysis. The results are presented as a map of dynamic regimes.We found that the remarkable multistability of the antiphase limit cycle and stable homogeneous and inhomogeneous steady states exists over broad ranges of control parameters.We studied the antiphase limit cycle stability and the evolution of irregular oscillatory regimes in the parameter areas where the antiphase cycle loses stability. In these regions we observed developing complex oscillations, collective chaos, and multistability between regular limit cycles and complex oscillations over uncommonly large intervals of coupling strength. QS coupling stimulates the appearance of intrachaotic periodic windows with spatially symmetric and asymmetric partial limit cycles which, in turn, change the type of chaos from a simple antiphase character into chaos composed of pieces of the trajectories having alternating polarity. The very rich dynamics discovered in the system of two identical simple ring oscillators may serve as a possible background for biological phenotypic diversification, as well as
机译:遗传振荡器在细胞寿命调节中起重要作用。监管效率通常强烈取决于稳定集体动态模式的出现,这需要设计遗传网络之间的相互作用。我们研究了两种相同的合成遗传压抑方法的动态,其通过另外的质粒偶联,其在每个网络中实现Quorum感测(QS),从而支持全球耦合。在基本遗传环振荡器网络中,其中三个基因以单向方式抑制彼此,QS刺激所选择的基因的转录活性,该基因提供抑制和刺激活动之间局部化在这些基因的刺激活动之间的转录活动。选择“启动子强度”,转录抑制的山坡合作系数,以及控制遗传反应基本速率的偶联强度,参数,用于广泛的分岔分析。结果呈现为动态制度的地图。我们发现,抗激酶限制周期和稳定的均匀和不均匀状态存在显着的多个,存在于广泛的控制参数范围内。我们研究了反相限制循环稳定性和不规则振荡的演变反相循环失去稳定性的参数区域中的制度。在这些区域中,我们观察到在常规限制循环和复杂振荡之间产生复杂的振荡,集体混沌和多个能力,通过罕见的耦合强度的罕见间隔。 QS耦合刺激具有空间对称和非对称部分极限循环的托管周期窗口的外观,反过来,反过来将混沌类型从简单的反相字符改变为由交替极性的轨迹的片断组成的混沌。在两个相同的简单环形振荡器的系统中发现的非常丰富的动态可以作为生物表型多样化的可能背景,以及

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