Mathematical model based on the Jeffreys type equation for description of gene expression

I. Gula, A. Samsonov
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Abstract

The classical diffusion model widely used for description of transport processes results, in general, in an infinite velocity of particles propagation. It is hardly applicable to the description of protein transport in biological systems, containing heavy molecules. In the 1950s the Jeffreys type equation was applied to govern the motion of rheological substances. Later, using this equation, the transport problem statement was modified to consider the gene expression in fruit fly embryo, and the model equation for protein concentration was proposed. The numerical solution of the coupled Jeffreys type equations with nonlinear terms is found for description of gap gene expression in early Drosophila embryo development and compared with the experimental data.
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基于Jeffreys型方程描述基因表达的数学模型
广泛用于描述输运过程的经典扩散模型通常导致粒子的无限传播速度。它很难适用于描述含有重分子的生物系统中的蛋白质运输。在20世纪50年代,杰弗里斯型方程被应用于控制流变物质的运动。随后,利用该方程对转运问题表述进行修正,考虑果蝇胚胎中基因的表达,提出了蛋白浓度的模型方程。建立了描述果蝇早期胚胎发育间隙基因表达的非线性耦合Jeffreys型方程的数值解,并与实验数据进行了比较。
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