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Algebraic computation of genetic patterns related to three-dimensional evolution algebras

机译:与三维演化代数相关的遗传模式的代数计算

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The mitosis process of an eukaryotic cell can be represented by the structure constants of an evolution algebra. Any isotopism of the latter corresponds to a mutation of genotypes of the former. This paper uses Computational Algebraic Geometry to determine the distribution of three-dimensional evolution algebras over any field into isotopism classes and hence, to describe the spectrum of genetic patterns of three distinct genotypes during a mitosis process. Their distribution into isomorphism classes is also determined in case of dealing with algebras having a one-dimensional annihilator. (C) 2017 Elsevier Inc. All rights reserved.
机译:真核细胞的有丝分裂过程可以由演化代数的结构常数表示。 后者的任何同位素都对应于前者的基因型的突变。 本文采用计算代数几何形状来确定任何场的三维演化代数分布到同位素类别中,从而描述了在有丝分裂过程中三种不同基因型的遗传模式的谱。 在处理具有一维湮灭器的代数的情况下也确定它们分布成同构阶级。 (c)2017年Elsevier Inc.保留所有权利。

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