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The origin of autonomous agents by natural selection

机译:通过自然选择产生自治代理的起源

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摘要

We propose conditions in which an autonomous agent could arise, and increase in complexity. It is assumed that on the primitive Earth there arose a recycling flow-reactor containing spontaneously formed oil droplets or lipid aggregates. These droplets grew at a basal rate by simple incorporation of lipid phase material, and divided by external agitation. This type of system was able to implement a natural selection algorithm once heredity was added. Macroevolution became possible by selection for rarely occurring chemical reactions that produced holistic autocatalytic molecular replicators (contained within the aggregate) capable of doubling at least as fast as the lipid aggregate, and which were also capable of benefiting the growth of its lipid aggregate container. No nucleotides or monomers capable of modular heredity were required at the outset. To explicitly state this hypothesis, a computer model was developed that employed an artificial chemistry, exhibiting conservation of mass and energy, incorporated within each individual of a population of lipid aggregates. This model evolved increasingly complex self-sustaining processes of constitution, a result that is also expected in real chemistry. (c) 2007 Elsevier Ireland Ltd. All rights reserved.
机译:我们提出了可能产生自治代理并增加复杂性的条件。假定在原始地球上出现了一个循环流动反应器,其中包含自发形成的油滴或脂质聚集体。通过简单地掺入脂质相材料,这些液滴以基础速率生长,并通过外部搅动分开。一旦添加了遗传,这种类型的系统便能够实施自然选择算法。通过选择很少发生的化学反应,进行宏观进化成为可能,这些化学反应产生的整体自催化分子复制子(包含在聚集体中)能够复制至少与脂质聚集体一样快,并且也能够促进其脂质聚集体容器的生长。一开始就不需要能够进行模块遗传的核苷酸或单体。为了明确陈述这一假设,开发了一种计算机模型,该模型采用人工化学方法,表现出质量和能量守恒,并纳入了脂质聚集体的每个个体中。该模型发展了越来越复杂的组成的自我维持过程,这一结果在实际化学中也是可以预期的。 (c)2007 Elsevier Ireland Ltd.保留所有权利。

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