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Variable-Internal-Stores models of microbial growth and metabolism with dynamic allocation of cellular resources

机译:动态分配细胞资源的微生物生长和代谢的内部可变存储模型

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摘要

Variable-Internal-Stores models of microbial metabolism and growth have proven to be invaluable in accounting for changes in cellular composition as microbial cells adapt to varying conditions of nutrient availability. Here, such a model is extended with explicit allocation of molecular building blocks among various types of catalytic machinery. Such an extension allows a reconstruction of the regulatory rules employed by the cell as it adapts its physiology to changing environmental conditions. Moreover, the extension proposed here creates a link between classic models of microbial growth and analyses based on detailed transcriptomics and proteomics data sets. We ascertain the compatibility between the extended Variable-Internal-Stores model and the classic models, demonstrate its behaviour by means of simulations, and provide a detailed treatment of the uniqueness and the stability of its equilibrium point as a function of the availabilities of the various nutrients.
机译:微生物代谢和生长的内部可变存储模型已被证明在解释细胞组成的变化方面具有无价的价值,因为微生物细胞可以适应各种营养条件。在此,通过在各种类型的催化机械之间明确分配分子构件来扩展这种模型。这种扩展允许重构细胞所采用的调节规则,因为其使其生理适应不断变化的环境条件。此外,此处提出的扩展在微生物生长的经典模型与基于详细转录组学和蛋白质组学数据集的分析之间建立了联系。我们确定扩展的内部变量商店模型与经典模型之间的兼容性,通过仿真演示其行为,并根据各种可用性的可用性,详细介绍其平衡点的唯一性和稳定性。营养。

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