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首页> 外文期刊>Systems and Synthetic Biology >Quantum-like model for the adaptive dynamics of the genetic regulation of E. coli's metabolism of glucose/lactose
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Quantum-like model for the adaptive dynamics of the genetic regulation of E. coli's metabolism of glucose/lactose

机译:用于大肠杆菌葡萄糖/乳糖代谢遗传调节的适应性动力学的类量子模型

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摘要

We developed a quantum-like model describing the gene regulation of glucose/lactose metabolism in a bacterium, Escherichia coli. Our quantum-like model can be considered as a kind of the operational formalism for microbiology and genetics. Instead oftrying to describe processes in a cell in the very detail, we propose a formal operator description. Such a description may be very useful in situation in which the detailed description of processes is impossible or extremely complicated. We analyze statistical data obtained from experiments, and we compute the degree of E. col's preference within adaptive dynamics. It is known that there are several types of E. coli characterized by the metabolic system. We demonstrate that the same type of E. coli canbe described by the well determined operators; we find invariant operator quantities characterizing each type. Such invariant quantities can be calculated from the obtained statistical data.
机译:我们开发了一种类似量子的模型,该模型描述了细菌大肠杆菌中葡萄糖/乳糖代谢的基因调控。我们的类量子模型可以被认为是微生物学和遗传学的一种操作形式主义。与其尝试非常详细地描述单元中的过程,我们不提出正式的操作员描述。在不可能或不可能非常详细地描述过程的情况下,这种描述可能非常有用。我们分析从实验中获得的统计数据,并在自适应动力学中计算大肠杆菌的偏好程度。已知有几种以代谢系统为特征的大肠杆菌。我们证明,经过确定的操作人员可以描述相同类型的大肠杆菌;我们发现每种类型都具有不变的算子数量。这样的不变量可以根据获得的统计数据来计算。

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