Computational models of plant development and form
- PMID: 22235985
- DOI: 10.1111/j.1469-8137.2011.04009.x
Computational models of plant development and form
Abstract
The use of computational techniques increasingly permeates developmental biology, from the acquisition, processing and analysis of experimental data to the construction of models of organisms. Specifically, models help to untangle the non-intuitive relations between local morphogenetic processes and global patterns and forms. We survey the modeling techniques and selected models that are designed to elucidate plant development in mechanistic terms, with an emphasis on: the history of mathematical and computational approaches to developmental plant biology; the key objectives and methodological aspects of model construction; the diverse mathematical and computational methods related to plant modeling; and the essence of two classes of models, which approach plant morphogenesis from the geometric and molecular perspectives. In the geometric domain, we review models of cell division patterns, phyllotaxis, the form and vascular patterns of leaves, and branching patterns. In the molecular-level domain, we focus on the currently most extensively developed theme: the role of auxin in plant morphogenesis. The review is addressed to both biologists and computational modelers.
© 2012 The Authors. New Phytologist © 2012 New Phytologist Trust.
References
-
- Adler I. 1974. A model of contact pressure in phyllotaxis. Journal of Theoretical Biology 45: 1-79.
-
- Allen M, Prusinkiewicz P, DeJong T. 2005. Using L-systems for modeling source-sink interactions, architecture and physiology of growing trees: the L-PEACH model. New Phytologist 166: 869-880.
-
- Arber A. 1950. Natural philosophy of plant form. Cambridge, UK: University Press.
-
- D'Arcy Thompson . 1942. On growth and form, 2nd edn . Cambridge, UK: Cambridge University Press.
-
- Arnold VI. 1992. Catastrophe theory. Berlin, Germany: Springer.
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