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将有生命个体的控制论定义与现实世界相对照。

Confrontation of the cybernetic definition of a living individual with the real world.

作者信息

Korzeniewski Bernard

机构信息

Faculty of Biotechnology, Jagiellonian University, Kraków, Poland.

出版信息

Acta Biotheor. 2005;53(1):1-28. doi: 10.1007/s10441-005-7000-7.

Abstract

The cybernetic definition of a living individual proposed previously (Korzeniewski, 2001) is very abstract and therefore describes the essence of life in a very formal and general way. In the present article this definition is reformulated in order to determine clearly the relation between life in general and a living individual in particular, and it is further explained and defended. Next, the cybernetic definition of a living individual is confronted with the real world. It is demonstrated that numerous restrictions imposed on the cybernetic definition of life by physical reality imply a number of particular properties of life that characterize present life on Earth, namely: (1) a living individual must be a dissipative structure (and therefore a low-entropy thermodynamic system out of the state of equilibrium); (2) spontaneously-originated life must be based on organic compounds; (3) evolutionarily stable self-dependent, free-living individuals must have some minimal level of complexity of structure and function; (4) a living individual must have a record of identity separated from an executive machinery; (5) the identity of living individuals must mutate and may evolve; (6) living individuals may collect and accumulate information in subsequent generations over very long periods of time; (7) the degree of complexity of a living individual reflects the degree of complexity of its environment (ecological niche) and (8) living individuals are capable of supple adaptation to varying environmental conditions. Thus, the cybernetic definition of a living individual, when confronted with the real physical world, generates most of the general properties of the present life on Earth.

摘要

先前提出的关于生物个体的控制论定义(科尔泽涅夫斯基,2001年)非常抽象,因此以一种非常形式化和普遍的方式描述了生命的本质。在本文中,这个定义被重新表述,以便明确一般生命与特定生物个体之间的关系,并对其进行进一步解释和辩护。接下来,将生物个体的控制论定义与现实世界进行对照。结果表明,物理现实对生命控制论定义所施加的众多限制意味着生命具有许多特定属性,这些属性表征了地球上当前的生命,即:(1)生物个体必须是一个耗散结构(因此是处于非平衡态的低熵热力学系统);(2)自然起源的生命必须基于有机化合物;(3)进化稳定的、自我依赖的自由生活个体必须具有某种最低水平的结构和功能复杂性;(4)生物个体必须有一个与执行机制分离的身份记录;(5)生物个体的身份必须发生突变并且可能进化;(6)生物个体可以在很长时间内收集和积累后代的信息;(7)生物个体的复杂程度反映了其环境(生态位)的复杂程度;(8)生物个体能够灵活适应不断变化的环境条件。因此,当生物个体的控制论定义与现实物理世界相对照时,它产生了地球上当前生命的大多数一般属性。

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