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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Evolutionarily stable disequilibrium: endless dynamics of evolution in a stationary population
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Evolutionarily stable disequilibrium: endless dynamics of evolution in a stationary population

机译:进化稳定的不平衡:固定种群进化的无穷动力

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Evolution is often conceived as changes in the properties of a population over generations. Does this notion exhaust the possible dynamics of evolution? Life is hierarchically organized, and evolution can operate at multiple levels with conflicting tendencies. Using a minimal model of such conflicting multilevel evolution, we demonstrate the possibility of a novel mode of evolution that challenges the above notion: individuals ceaselessly modify their genetically inherited phenotype and fitness along their lines of descent, without involving apparent changes in the properties of the population. The model assumes a population of primitive cells (protocells, for short), each containing a population of replicating catalytic molecules. Protocells are selected towards maximizing the catalytic activity of internal molecules, whereas molecules tend to evolve towards minimizing it in order to maximize their relative fitness within a protocell. These conflicting evolutionary tendencies at different levels and genetic drift drive the lineages of protocells to oscillate endlessly between high and low intracellular catalytic activity, i.e. high and low fitness, along their lines of descent. This oscillation, however, occurs independently in different lineages, so that the population as a whole appears stationary. Therefore, ongoing evolution can be hidden behind an apparently stationary population owing to conflicting multilevel evolution.
机译:进化通常被认为是世代相传的人口特性的变化。这个想法是否耗尽了进化的可能动力?生命是按层次结构组织的,进化可以以相互冲突的趋势在多个层面上进行。使用这种相互矛盾的多级进化的最小模型,我们证明了挑战上述观念的新型进化模式的可能性:个体沿其血统不断地修改其遗传遗传表型和适应性,而不会涉及遗传特性的明显变化。人口。该模型假设一组原始细胞(简称protocells),每个原始细胞都包含一组复制性催化分子。选择原始细胞以最大化内部分子的催化活性,而分子趋向于使其最小化以最大化其在原始细胞内的相对适应性。这些在不同水平和遗传漂移上相互矛盾的进化趋势驱使原代细胞谱系沿其后代在高和低细胞内催化活性,即高和低适应性之间无休止地振荡。但是,这种振荡独立地发生在不同的谱系中,因此总体上总体看来是静止的。因此,由于冲突的多级进化,正在进行的进化可以隐藏在明显静止的种群后面。

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