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PMID: 16479489 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

An anisotropic-viscoplastic model of plant cell morphogenesis by tip growth.

The International journal of developmental biology ·Vol. 50 ·No. 2-3 ·2006-00-00 ·Pages 209-22

Dumais J, Shaw SL, Steele CR, Long SR, Ray PM

Abstract

Plant cell morphogenesis depends critically on two processes: the deposition of new wall material at the cell surface and the mechanical deformation of this material by the stresses resulting from the cell's turgor pressure. We developed a model of plant cell morphogenesis that is a first attempt at integrating these two processes. The model is based on the theories of thin shells and anisotropic viscoplasticity. It includes three sets of equations that give the connection between wall stresses, wall strains and cell geometry. We present an algorithm to solve these equations numerically. Application of this simulation approach to the morphogenesis of tip-growing cells illustrates how the viscoplastic properties of the cell wall affect the shape of the cell at steady state. The same simulation approach was also used to reproduce morphogenetic transients such as the initiation of tip growth and other non-steady changes in cell shape. Finally, we show that the mechanical anisotropy built into the model is required to account for observed patterns of wall expansion in plant cells.

MeSH Terms
Anisotropy Cell Differentiation/physiology Cell Wall/physiology Models, Biological Plant Cells Plant Development Viscosity
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Dumais Jacques
Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138, USA. jdumais@oeb.harvard.edu
Shaw Sidney L
Steele Charles R
Long Sharon R
Ray Peter M
Article Info
Journal
The International journal of developmental biology
Abbr.
Int J Dev Biol
ISSN
0214-6282
Published
2006-00-00
Pages
209-22
Language
English
Region
Spain
NLM ID
8917470
Subset
IM
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