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Critical-like self-organization and natural selection: Two facets of a single evolutionary process?

机译:类似于批判的自我组织和自然选择:单个进化过程的两个方面?

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We argue that critical-like dynamics self-organize relatively easily in non-equilibrium systems, and that in biological systems such dynamics serve as templates upon which natural selection builds further elaborations. These critical-like states can be modified by natural selection in two fundamental ways, reflecting the selective advantage (if any) of heritable variations either among avalanche participants or among whole systems. First, reproducing (avalanching) units can differentiate, as units adopt systematic behavioural variations. Second, whole systems that are exposed to natural selection can become increasingly or decreasingly critical. We suggest that these interactions between SOC-like dynamics and natural selection have profound consequences for biological systems because they could have facilitated the evolution of division of labour, compartmentalization and computation, key features of biological systems. The logical conclusion of these ideas is that the fractal geometry of nature is anything but coincidental, and that natural selection is itself a fractal process, occurring on many temporal and spatial scales.
机译:我们认为,类似临界的动力学在非平衡系统中相对容易自组织,而在生物系统中,这种动力学充当模板,自然选择在此基础上进行了进一步的阐述。这些临界状态可以通过自然选择以两种基本方式进行修改,以反映雪崩参与者或整个系统之间可遗传变异的选择优势(如果有)。首先,由于单元采用系统的行为变化,因此复制(雪崩)单元可以区分。其次,暴露于自然选择的整个系统可能变得越来越关键。我们认为,类似SOC的动力学和自然选择之间的这些相互作用对生物系统具有深远的影响,因为它们本来可以促进分工,分区和计算,生物系统的关键特征的演进。这些想法的逻辑结论是,自然界的分形几何学并非巧合,自然选择本身就是一个分形过程,发生在许多时空尺度上。

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