Evolving Mechanisms of Morphogenesis: on the Interplay between Differential Adhesionand Cell Differentiation
Publication date
2000-01-05
Authors
Hogeweg, P.
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
Abstract
Differential cell adhesion, mediated by e.g. integrin and cadherins/catenines, plays an important
role in morphogenesis and it has been shown that there is intimate cross-talk between
their expression and modification, and inter-cellular signalling, cell differentiation, cell growth
and apoptosis. In this paper, we introduce and use a formal model to explore the morphogenetic
potential of the interplay between these processes. We demonstrate the formation
of interesting morphologies. Initiated by cell differentiation, differential cell adhesion leads
to a long transient of cell migrations, e.g. engulfing and intercalation of cells and cell layers.
This transient can be sustained dynamically by further cell di!erentiation, and by cell
growth/division and cell death which are triggered by the (also long range) forces (stretching
and squeezing) generated by the cell adhesion. We study the interrelation between modes of
cell differentiation and modes of morphogenesis. We use an evolutionary process to zoom in
on gene-regulation networks which lead to cell di!erentiation. Morphogenesis is not selected
for but appears as a side-e!ect. The evolutionary dynamics shows the hallmarks of evolution
on a rugged landscape, including long neutral paths. We show that a combinatorially large set
of morphologies occurs in the vicinity of a neutral path which sustains cell di!erentiation.
Thus, an almost linear molecular phylogeny gives rise to mosaic evolution on the morphological
level.