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Mathematical modeling in genetic networks: relationships between the genetic expression and both chromosomic breakage and positive circuits

机译:遗传网络中的数学建模:遗传表达与染色体断裂和正电路之间的关系

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The human genome with its 23 pairs of chromosomes, is the result of evolution. This evolution has been ruled by the mutation process and also by the physiological and pathological reorganization of the genomic material inside or between the chromosomes, which are conditioning the genomic variability. This reorganization is starting at singular points on the short or long chromosomic arms, called crossing-over, or translocations, insertions, break points. In this paper, we will show that these points, also called weak points or hot spots of the genome are correlated, independently of their origin. In addition, we will give some properties of the genetic interaction matrices in terms of attractors of the genetic expression dynamics.
机译:具有23对染色体的人类基因组是进化的结果。这种进化是由突变过程以及染色体内部或染色体之间的基因组材料的生理和病理学重组所决定的,而染色体和基因组之间的调节基因组变异性。这种重组是从短或长染色体臂上的奇异点开始的,称为交叉或易位,插入,断裂点。在本文中,我们将显示这些点,也称为基因组的弱点或热点,与它们的起源无关。此外,我们将根据遗传表达动力学的吸引子,给出遗传相互作用矩阵的一些性质。

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