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Robustness and evolvability: a paradox resolved

Proceedings of the Royal Society B Biological Sciences · 2007 · Vol. 275(1630) · pp. 91–100
Andreas Wagner

Abstract

Understanding the relationship between robustness and evolvability is key to understand how living things can withstand mutations, while producing ample variation that leads to evolutionary innovations. Mutational robustness and evolvability, a system's ability to produce heritable variation, harbour a paradoxical tension. On one hand, high robustness implies low production of heritable phenotypic variation. On the other hand, both experimental and computational analyses of neutral networks indicate that robustness enhances evolvability. I here resolve this tension using RNA genotypes and their secondary structure phenotypes as a study system. To resolve the tension, one must distinguish between robustness of a genotype and a phenotype. I confirm that genotype (sequence) robustness and evolvability share an antagonistic relationship. In stark contrast, phenotype (structure) robustness promotes structure evolvability. A consequence is that finite populations of sequences with a robust phenotype can access large amounts of phenotypic variation while spreading through a neutral network. Population-level processes and phenotypes rather than individual sequences are key to understand the relationship between robustness and evolvability. My observations may apply to other genetic systems where many connected genotypes produce the same phenotypes.

Evolution and Genetic DynamicsRNA and protein synthesis mechanismsBioinformatics and Genomic NetworksEvolvabilityRobustness (evolution)PhenotypeBiologyNeutral networkGeneticsEvolutionary biologyComputational biologyComputer scienceGene

MeSH terms

Computer SimulationBiological EvolutionGenotypeModels, GeneticPhenotypeRNAGenetic VariationBase Pairing
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References
From sequences to shapes and back: a case study in RNA secondary structures
Proceedings of the Royal Society B Biological Sciences · 1994 · 852 citations
GENETIC ASSIMILATION OF AN ACQUIRED CHARACTER
Evolution · 1953 · 1,153 citations
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