Epigenetic mechanisms of character origination
- 15 December 2000
- journal article
- review article
- Published by Wiley in Journal of Experimental Zoology
- Vol. 288 (4) , 304-317
- https://doi.org/10.1002/1097-010x(20001215)288:4<304::aid-jez3>3.0.co;2-g
Abstract
The close mapping between genotype and morphological phenotype in many contemporary metazoans has led to the general notion that the evolution of organismal form is a direct consequence of evolving genetic programs. In contrast to this view, we propose that the present relationship between genes and form is a highly derived condition, a product of evolution rather than its precondition. Prior to the biochemical canalization of developmental pathways, and the stabilization of phenotypes, interaction of multicellular organisms with their physico‐chemical environments dictated a many‐to‐many mapping between genomes and forms. These forms would have been generated by epigenetic mechanisms: initially physical processes characteristic of condensed, chemically active materials, and later conditional, inductive interactions among the organism’s constituent tissues. This concept, that epigenetic mechanisms are the generative agents of morphological character origination, helps to explain findings that are difficult to reconcile with the standard neo‐Darwinian model, e.g., the burst of body plans in the early Cambrian, the origins of morphological innovation, homology, and rapid change of form. Our concept entails a new interpretation of the relationship between genes and biological form. J. Exp. Zool. (Mol. Dev. Evol.) 288:304–317, 2000.Keywords
This publication has 87 references indexed in Scilit:
- Sticky fingers: Hox genes and cell adhesion in vertebrate limb developmentBioEssays, 1996
- Persistent tangled vortex rings in generic excitable mediaNature, 1994
- Cellular shape and pressure may mediate mechanical control of tissue composition in tendonsJournal of Orthopaedic Research, 1993
- One thousand families for the molecular biologistNature, 1992
- Transcriptional regulation of a pair-rule stripe in Drosophila.Genes & Development, 1991
- Neophenogenesis: A developmental theory of phenotypic evolutionJournal of Theoretical Biology, 1990
- Early and late periodic patterns of even skipped expression are controlled by distinct regulatory elements that respond to different spatial cuesCell, 1989
- Ancestral patterns in bird limb development: A new look at Hampé's experimentJournal of Evolutionary Biology, 1989
- Beyond neo-Darwinism—an epigenetic approach to evolutionJournal of Theoretical Biology, 1979
- The chemical basis of morphogenesisPhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1952