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论模块化变异的起源。

On the origin of modular variation.

作者信息

Lipson Hod, Pollack Jordan B, Suh Nam P

机构信息

Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, New York 14853, USA.

出版信息

Evolution. 2002 Aug;56(8):1549-56. doi: 10.1111/j.0014-3820.2002.tb01466.x.

Abstract

We study the dynamics of modularization in a minimal substrate. A module is a functional unit relatively separable from its surrounding structure. Although it is known that modularity is useful both for robustness and for evolvability (Wagner 1996), there is no quantitative model describing how such modularity might originally emerge. Here we suggest, using simple computer simulations, that modularity arises spontaneously in evolutionary systems in response to variation, and that the amount of modular separation is logarithmically proportional to the rate of variation. Consequently, we predict that modular architectures would appear in correlation with high environmental change rates. Because this quantitative model does not require any special substrate to occur, it may also shed light on the origin of modular variation in nature. This observed relationship also indicates that modular design is a generic phenomenon that might be applicable to other fields, such as engineering: Engineering design methods based on evolutionary simulation would benefit from evolving to variable, rather than stationary, fitness criteria, as a weak and problem-independent method for inducing modularity.

摘要

我们研究了最小基质中模块化的动力学。一个模块是一个相对可与其周围结构分离的功能单元。尽管已知模块化对稳健性和可进化性都很有用(瓦格纳,1996年),但尚无定量模型描述这种模块化最初可能是如何出现的。在此,我们通过简单的计算机模拟表明,模块化在进化系统中会因变异而自发出现,并且模块分离的程度与变异速率呈对数比例关系。因此,我们预测模块化架构会与高环境变化率相关出现。由于这个定量模型不需要任何特殊基质就能出现,它或许还能阐明自然界中模块化变异的起源。这种观察到的关系也表明模块化设计是一种可能适用于其他领域(如工程领域)的普遍现象:基于进化模拟的工程设计方法若能演变为可变而非固定的适应度标准,作为一种诱导模块化的弱且与问题无关的方法,将会从中受益。

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