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PMID: 12082173 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Waddington's canalization revisited: developmental stability and evolution.

Siegal ML, Bergman A

Abstract

Most species maintain abundant genetic variation and experience a range of environmental conditions, yet phenotypic variation is low. That is, development is robust to changes in genotype and environment. It has been claimed that this robustness, termed canalization, evolves because of long-term natural selection for optimal phenotypes. We show that the developmental process, here modeled as a network of interacting transcriptional regulators, constrains the genetic system to produce canalization, even without selection toward an optimum. The extent of canalization, measured as the insensitivity to mutation of a network's equilibrium state, depends on the complexity of the network, such that more highly connected networks evolve to be more canalized. We argue that canalization may be an inevitable consequence of complex developmental-genetic processes and thus requires no explanation in terms of evolution to suppress phenotypic variation.

MeSH Terms
Evolution, Molecular Models, Genetic
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Siegal Mark L
Department of Biological Sciences, and Center for Computational Genetics and Biological Modeling, Stanford University, Stanford, CA 94305-5020, USA.
Bergman Aviv
References (24)
24 references, click to expand
  1. Population and quantitative genetics of regulatory networks.
    J Theor Biol. 1999 Apr 7;197(3):281-94 PMID: 10089143
  2. Cause and effect in evolution.
    Nature. 1999 May 6;399(6731):30 PMID: 10331386
  3. Epigenetic inheritance, genetic assimilation and speciation.
    J Theor Biol. 1999 Sep 7;200(1):19-37 PMID: 10479537
  4. Canalization in evolutionary genetics: a stabilizing theory?
    Bioessays. 2000 Apr;22(4):372-80 PMID: 10723034
  5. Robustness against mutations in genetic networks of yeast.
    Nat Genet. 2000 Apr;24(4):355-61 PMID: 10742097
  6. The segment polarity network is a robust developmental module.
    Nature. 2000 Jul 13;406(6792):188-92 PMID: 10910359
  7. The evolution of genetic canalization under fluctuating selection.
    Evolution. 2000 Feb;54(1):1-12 PMID: 10937177
  8. Plasticity, evolvability, and modularity in RNA.
    J Exp Zool. 2000 Oct 15;288(3):242-83 PMID: 11069142
  9. Intrinsically driven changes in gene interaction complexity. I. Growth of regulatory complexes and increase in number of genes.
    J Mol Evol. 2001 Oct-Nov;53(4-5):539-54 PMID: 11675614
  10. Modeling genetic networks and their evolution: a complex dynamical systems perspective.
    Biol Chem. 2001 Sep;382(9):1289-99 PMID: 11688712
  11. [Evolutionary systems; animal and human].
    Nature. 1959 Jun 13;183(4676):1634-8 PMID: 13666845
  12. The Genetics of a Pattern.
    Genetics. 1960 Aug;45(8):1039-50 PMID: 17247981
  13. THE EVOLUTION OF CANALIZATION AND THE BREAKING OF VON BAER'S LAWS: MODELING THE EVOLUTION OF DEVELOPMENT WITH EPISTASIS.
    Evolution. 1998 Jun;52(3):647-656 PMID: 28565257
  14. DOES EVOLUTIONARY PLASTICITY EVOLVE?
    Evolution. 1996 Jun;50(3):1008-1023 PMID: 28565284
  15. A QUANTITATIVE-GENETIC MODEL FOR SELECTION ON DEVELOPMENTAL NOISE.
    Evolution. 1994 Oct;48(5):1478-1486 PMID: 28568416
  16. FITNESS SENSITIVITY AND THE CANALIZATION OF LIFE-HISTORY TRAITS.
    Evolution. 1994 Oct;48(5):1438-1450 PMID: 28568425
  17. Selection for an invariant character, vibrissa number in the house mouse. V. Selection on non-tabby segregants from tabby selection lines.
    Genetics. 1967 Feb;55(2):365-73 PMID: 6029980
  18. The molecular basis of dominance.
    Genetics. 1981 Mar-Apr;97(3-4):639-66 PMID: 7297851
  19. Mutation models and quantitative genetic variation.
    Genetics. 1993 Mar;133(3):729-36 PMID: 8454212
  20. Effect of polymorphism in the Drosophila regulatory gene Ultrabithorax on homeotic stability.
    Science. 1996 Jan 12;271(5246):200-3 PMID: 8539619
  21. Naturally occurring genetic variation affects Drosophila photoreceptor determination.
    Dev Genes Evol. 1998 Jan;207(7):462-70 PMID: 9510541
  22. Canalization, genetic assimilation and preadaptation. A quantitative genetic model.
    Genetics. 1998 Aug;149(4):2119-33 PMID: 9691063
  23. How should we explain variation in the genetic variance of traits?
    Genetica. 1998;102-103(1-6):241-53 PMID: 9720283
  24. Hsp90 as a capacitor for morphological evolution.
    Nature. 1998 Nov 26;396(6709):336-42 PMID: 9845070
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2002-08-06
Epub
2002-00-24
Pages
10528-32
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC124963
Subset
IM
Corrections
CommentIn
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