ADAPTATION AND THE COST OF COMPLEXITY
Top Cited Papers
Open Access
- 1 February 2000
- Vol. 54 (1) , 13-20
- https://doi.org/10.1111/j.0014-3820.2000.tb00002.x
Abstract
— Adaptation is characterized by the movement of a population toward a many-character optimum, movement that results in an increase in fitness. Here I calculate the rate at which fitness increases during adaptation and describe the curve giving fitness versus time as a population approaches an optimum in Fisher's model of adaptation. The results identify several factors affecting the speed of adaptation. One of the most important is organismal complexity—complex organisms adapt more slowly than simple ones when using mutations of the same phenotypic size. Thus, as Fisher foresaw, organisms pay a kind of cost of complexity. However, the magnitude of this cost is considerably larger than Fisher's analysis suggested. Indeed the rate of adaptation declines at least as fast as n-1, where n is the number of independent characters or dimensions comprising an organism. The present results also suggest that one can define an effective number of dimensions characterizing an adapting species.Keywords
This publication has 19 references indexed in Scilit:
- POSSIBLE LARGEST-SCALE TRENDS IN ORGANISMAL EVOLUTION: Eight “Live Hypotheses”Annual Review of Ecology and Systematics, 1998
- The Population Genetics of Adaptation: The Distribution of Factors Fixed during Adaptive EvolutionEvolution, 1998
- Evolutionary Dynamics of Fitness Recovery from the Debilitating Effects of Muller's RatchetEvolution, 1998
- Compensatory Nearly Neutral Mutations: Selection without AdaptationJournal of Theoretical Biology, 1996
- Perspective: Complex Adaptations and the Evolution of EvolvabilityEvolution, 1996
- Perspective: Metazoan Complexity and Evolution: Is There a Trend?Evolution, 1996
- Evolutionary Change in the Morphological Complexity of the Mammalian Vertebral ColumnEvolution, 1993
- The Genetics of Adaptation: A ReassessmentThe American Naturalist, 1992
- The Nearly Neutral Theory of Molecular EvolutionAnnual Review of Ecology and Systematics, 1992
- The influence of variation and of developmental constraints on the rate of multivariate phenotypic evolutionJournal of Evolutionary Biology, 1988