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Main Authors: Banaji, Murad, Feliu, Elisenda
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2409.06877
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author Banaji, Murad
Feliu, Elisenda
author_facet Banaji, Murad
Feliu, Elisenda
contents Any mass action network gives rise to a parameterised family of polynomial equations whose positive solutions are the positive equilibria of the network. Here, we consider alternative systems of equations, whose solutions are in smooth, one-to-one correspondence with positive equilibria of the network, and capture degeneracy or nondegeneracy of the corresponding equilibria. The construction leads us to consider partitions of networks in a natural sense, and we explore the implications of choosing different partitions. The alternative systems are in some situations simpler than the original mass action equations, which allows us to rapidly identify various algebraic and geometric properties of the positive equilibrium set. This includes the characterisation of toricity and local toricity, bounds on the number of positive nondegenerate equilibria on stoichiometric classes, semialgebraic descriptions of the parameter regions for multistationarity, and the study of bifurcations. After discussing the construction of the alternative systems, various consequences for particular classes of networks and numerous examples are presented. We also develop additional techniques specifically for quadratic networks, the most common class of networks in applications, and use these techniques to derive strengthened results for quadratic networks.
format Preprint
id arxiv_https___arxiv_org_abs_2409_06877
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Positive equilibria in mass action networks: geometry and bounds
Banaji, Murad
Feliu, Elisenda
Molecular Networks
Algebraic Geometry
92E20, 34C08, 05E40, 37G10
Any mass action network gives rise to a parameterised family of polynomial equations whose positive solutions are the positive equilibria of the network. Here, we consider alternative systems of equations, whose solutions are in smooth, one-to-one correspondence with positive equilibria of the network, and capture degeneracy or nondegeneracy of the corresponding equilibria. The construction leads us to consider partitions of networks in a natural sense, and we explore the implications of choosing different partitions. The alternative systems are in some situations simpler than the original mass action equations, which allows us to rapidly identify various algebraic and geometric properties of the positive equilibrium set. This includes the characterisation of toricity and local toricity, bounds on the number of positive nondegenerate equilibria on stoichiometric classes, semialgebraic descriptions of the parameter regions for multistationarity, and the study of bifurcations. After discussing the construction of the alternative systems, various consequences for particular classes of networks and numerous examples are presented. We also develop additional techniques specifically for quadratic networks, the most common class of networks in applications, and use these techniques to derive strengthened results for quadratic networks.
title Positive equilibria in mass action networks: geometry and bounds
topic Molecular Networks
Algebraic Geometry
92E20, 34C08, 05E40, 37G10
url https://arxiv.org/abs/2409.06877