Branciamore Sergio, Rodin Andrei S, Riggs Arthur D
Department of Computational and Quantitative Medicine, Beckman Research Institute of City of Hope, Duarte, USA.
Diabetes and Metabolism Research Institute, Beckman Research Institute of City of Hope, Duarte , USA.
J Mol Evol. 2024 Dec;92(6):861-873. doi: 10.1007/s00239-024-10213-9. Epub 2024 Nov 20.
In this report, we propose a novel mathematical model of the origin and evolution of sex determination in vertebrates that is based on the stochastic epigenetic modification (SEM) mechanism. We have previously shown that SEM, with rates consistent with experimental observation, can both increase the rate of gene fixation and decrease pseudogenization, thus dramatically improving the efficacy of evolution. Here, we present a conjectural model of the origin and evolution of sex determination wherein the SEM mechanism alone is sufficient to parsimoniously trigger and guide the evolution of heteromorphic sex chromosomes from the initial homomorphic chromosome configuration, without presupposing any allele frequency differences. Under this theoretical model, the SEM mechanism (i) predated vertebrate sex determination origins and evolution, (ii) has been conveniently and parsimoniously co-opted by the vertebrate sex determination systems during the evolutionary transitioning to the extant vertebrate sex determination, likely acting "on top" of these systems, and (iii) continues existing, alongside all known vertebrate sex determination systems, as a universal pan-vertebrate sex determination modulation mechanism.
在本报告中,我们提出了一种基于随机表观遗传修饰(SEM)机制的脊椎动物性别决定起源与进化的新型数学模型。我们之前已经表明,SEM以与实验观察结果一致的速率,既能提高基因固定率,又能减少假基因化,从而显著提高进化效率。在此,我们提出一种性别决定起源与进化的推测模型,其中仅SEM机制就足以简约地触发并引导从初始同形染色体构型到异形性染色体的进化,而无需预先假定任何等位基因频率差异。在这个理论模型下,SEM机制(i)早于脊椎动物性别决定的起源与进化,(ii)在向现存脊椎动物性别决定的进化转变过程中,被脊椎动物性别决定系统方便且简约地采用,可能在这些系统“之上”发挥作用,并且(iii)作为一种通用的全脊椎动物性别决定调节机制,与所有已知的脊椎动物性别决定系统一起持续存在。