The molecular and mathematical basis of Waddington's epigenetic landscape: a framework for post-Darwinian biology?
- PMID: 22102361
- DOI: 10.1002/bies.201100031
The molecular and mathematical basis of Waddington's epigenetic landscape: a framework for post-Darwinian biology?
Abstract
The Neo-Darwinian concept of natural selection is plausible when one assumes a straightforward causation of phenotype by genotype. However, such simple 1:1 mapping must now give place to the modern concepts of gene regulatory networks and gene expression noise. Both can, in the absence of genetic mutations, jointly generate a diversity of inheritable randomly occupied phenotypic states that could also serve as a substrate for natural selection. This form of epigenetic dynamics challenges Neo-Darwinism. It needs to incorporate the non-linear, stochastic dynamics of gene networks. A first step is to consider the mathematical correspondence between gene regulatory networks and Waddington's metaphoric 'epigenetic landscape', which actually represents the quasi-potential function of global network dynamics. It explains the coexistence of multiple stable phenotypes within one genotype. The landscape's topography with its attractors is shaped by evolution through mutational re-wiring of regulatory interactions - offering a link between genetic mutation and sudden, broad evolutionary changes.
Copyright © 2012 WILEY Periodicals, Inc.
Comment in
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Towards the new evolutionary synthesis: gene regulatory networks as information integrators.Bioessays. 2012 Feb;34(2):87. doi: 10.1002/bies.201290000. Bioessays. 2012. PMID: 22234900 No abstract available.
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Waddington's epigenetic landscape and post-Darwinian biology.Bioessays. 2012 Aug;34(8):711-2. doi: 10.1002/bies.201200038. Epub 2012 Apr 10. Bioessays. 2012. PMID: 22488123 No abstract available.
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