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

作者:

Highlights:

摘要

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.

论文关键词:Computational Algebraic Geometry,Evolution algebra,Classification,Isotopism,Isomorphism

论文评审过程:Received 1 October 2016, Revised 8 March 2017, Accepted 10 May 2017, Available online 29 May 2017, Version of Record 31 October 2017.

论文官网地址:https://doi.org/10.1016/j.amc.2017.05.045