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PMID: 12353747 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

On the origin of modular variation.

Evolution; international journal of organic evolution ·Vol. 56 ·No. 8 ·2002-08-00 ·Pages 1549-56

Lipson H, Pollack JB, Suh NP

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.

MeSH Terms
Adaptation, Physiological Biological Evolution Computer Simulation Forecasting Models, Biological
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lipson Hod
Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, New York 14853, USA.
Pollack Jordan B
Suh Nam P
Article Info
Journal
Evolution; international journal of organic evolution
Abbr.
Evolution
ISSN
0014-3820
Published
2002-08-00
Pages
1549-56
Language
English
Region
United States
NLM ID
0373224
Subset
IM
Corrections
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