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图灵寄生虫如何扩展数字生命的计算景观。

How Turing parasites expand the computational landscape of digital life.

机构信息

Departamento de Biología de Sistemas, Centro Nacional de Biotecnología (CSIC), C/Darwin 3, 28049 Madrid, Spain.

Grupo Interdisciplinar de Sistemas Complejos (GISC), Madrid, Spain.

出版信息

Phys Rev E. 2023 Oct;108(4-1):044407. doi: 10.1103/PhysRevE.108.044407.

Abstract

Why are living systems complex? Why does the biosphere contain living beings with complexity features beyond those of the simplest replicators? What kind of evolutionary pressures result in more complex life forms? These are key questions that pervade the problem of how complexity arises in evolution. One particular way of tackling this is grounded in an algorithmic description of life: living organisms can be seen as systems that extract and process information from their surroundings to reduce uncertainty. Here we take this computational approach using a simple bit string model of coevolving agents and their parasites. While agents try to predict their worlds, parasites do the same with their hosts. The result of this process is that, to escape their parasites, the host agents expand their computational complexity despite the cost of maintaining it. This, in turn, is followed by increasingly complex parasitic counterparts. Such arms races display several qualitative phases, from monotonous to punctuated evolution or even ecological collapse. Our minimal model illustrates the relevance of parasites in providing an active mechanism for expanding living complexity beyond simple replicators, suggesting that parasitic agents are likely to be a major evolutionary driver for biological complexity.

摘要

为什么生命系统是复杂的?为什么生物圈中存在的生物具有超越最简单复制子的复杂特征?什么样的进化压力导致更复杂的生命形式出现?这些都是贯穿于进化中复杂性产生的问题的关键问题。一种特别的解决方法是基于对生命的算法描述:可以将生物体视为从周围环境中提取和处理信息以减少不确定性的系统。在这里,我们使用共同进化的代理及其寄生虫的简单位串模型来采用这种计算方法。虽然代理试图预测它们的世界,但寄生虫也会对它们的宿主进行同样的操作。这个过程的结果是,为了逃避寄生虫,宿主代理尽管需要维护,但仍会扩展其计算复杂性。这反过来又会导致越来越复杂的寄生虫对应物。这种军备竞赛呈现出几个定性阶段,从单调进化到突发进化,甚至生态崩溃。我们的最小模型说明了寄生虫在超越简单复制子提供扩展生命复杂性的主动机制方面的相关性,这表明寄生虫可能是生物复杂性的主要进化驱动力。

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