稳健性(进化)
非线性系统
计算机科学
控制理论(社会学)
生物系统
系统标识
混合动力系统
鉴定(生物学)
化学
生物
物理
数据挖掘
人工智能
生态学
机器学习
生物化学
量子力学
基因
控制(管理)
度量(数据仓库)
作者
Yang Qi,Lei Wang,Enmin Feng,Hongchao Yin,Zhilong Xiu
摘要
In this paper, we present a framework to infer the possible transmembrane transport of intracellular substances. Considering four key enzymes, a modified fourteen-dimensional nonlinear hybrid dynamic system is established to describe the microbial continuous culture with enzyme-catalytic and genetic regulation. A novel quantitative definition of biological robustness is proposed to characterize the system's resilience when system parameters were perturbed. It not only considers the expectation of system output data after parameter disturbance but also considers the influence of the variance of these data. In this way, the definition can be used as an objective function of the system identification model due to the lack of data on the concentration of intracellular substances. Then, we design a parallel computing method to solve the system identification model. Numerical results indicate that the most likely transmembrane mode of transport is active transport coupling with passive diffusion for glycerol and 1, 3-propanediol.
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