No CrossRef data available.
Article contents
Competition and cooperation of biological macromolecules-an experimentally testable model of Darwinian evolution
Published online by Cambridge University Press: 01 July 2016
Abstract
An abstract is not available for this content so a preview has been provided. Please use the Get access link above for information on how to access this content.
- Type
- Unesco Meeting on Systems Theory
- Information
- Copyright
- Copyright © Applied Probability Trust 1982
References
Eigen, M. (1971) Selforganization of matter and the evolution of biological macromolecules. Naturwissenschaften
58, 456–526.CrossRefGoogle ScholarPubMed
Eigen, M. and Schuster, P. (1979) The Hypercycle- A Principle of Natural Selforganization.
Springer-Verlag, Berlin.Google Scholar
Eigen, M., Gardiner, W. C., Schuster, P. and Winkler-Oswatisch, R. (1981) The origin of genetic information. Scientific American
244 (4), 88–118.CrossRefGoogle ScholarPubMed
Hofbauer, J., Schuster, P., Sigmund, K. and Wolff, R. (1980) Dynamical systems under constant organization II: Homogeneous growth functions of degree p = 2. SIAM J. Appl. Math. C
38, 282–304.Google Scholar
Hofbauer, J., Schuster, P. and Sigmund, K. (1981) Competition and cooperation in catalytic selfreplication. J. Math. Biol.
11, 155–168.CrossRefGoogle Scholar
Schuster, P. (1981) Prebiotic evolution. In Biochemical Evolution, ed. Gutfreund, H., Cambridge University Press, London, 15–87.Google Scholar
Schuster, P., Sigmund, K. and Wolff, R. (1977) Dynamical systems under constant organization I: Topological analysis of a family of non-linear differential equations- a model for catalytic hypercycles. Bull. Math. Biol.
40, 743–769.Google Scholar
Schuster, P., Sigmund, K. and Wolff, R. (1979) Dynamical systems under constant organization III: Cooperative and competitive behaviour of hypercycles. J. Differential Equations
32, 357–368.CrossRefGoogle Scholar
Schuster, P., Sigmund, K. and Wolff, R. (1980) Mass action kinetics of selfreplication in flow reactors. J. Math. Anal. Appl.
78, 88–112.Google Scholar