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什么是复杂性?

What is complexity?

作者信息

Adami Christoph

机构信息

Digital Life Laboratory 136-93, California Institute of Technology, Pasadena 91109, USA.

出版信息

Bioessays. 2002 Dec;24(12):1085-94. doi: 10.1002/bies.10192.

Abstract

Arguments for or against a trend in the evolution of complexity are weakened by the lack of an unambiguous definition of complexity. Such definitions abound for both dynamical systems and biological organisms, but have drawbacks of either a conceptual or a practical nature. Physical complexity, a measure based on automata theory and information theory, is a simple and intuitive measure of the amount of information that an organism stores, in its genome, about the environment in which it evolves. It is argued that physical complexity must increase in molecular evolution of asexual organisms in a single niche if the environment does not change, due to natural selection. It is possible that complexity decreases in co-evolving systems as well as at high mutation rates, in sexual populations, and in time-dependent landscapes. However, it is reasoned that these factors usually help, rather than hinder, the evolution of complexity, and that a theory of physical complexity for co-evolving species will reveal an overall trend towards higher complexity in biological evolution.

摘要

由于缺乏对复杂性的明确定义,支持或反对复杂性进化趋势的论据都受到了削弱。对于动态系统和生物有机体,此类定义比比皆是,但都存在概念或实际方面的缺陷。物理复杂性是一种基于自动机理论和信息论的度量,是对生物体在其基因组中存储的关于其进化所处环境的信息量的一种简单直观的度量。有人认为,如果环境不变,由于自然选择,在单一生态位中的无性生物的分子进化中,物理复杂性必然会增加。在共同进化系统中,以及在高突变率情况下、有性种群中和随时间变化的环境中,复杂性有可能降低。然而,有理由认为,这些因素通常有助于而非阻碍复杂性的进化,并且共同进化物种的物理复杂性理论将揭示生物进化中朝着更高复杂性发展的总体趋势。

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