DocumentCode
1930433
Title
Mathematical Modeling for Spatiotemporal Development of Leaf Primordium
Author
Ishii, Koji ; Hamada, Hiroyuki ; Okamoto, Masahiro
Author_Institution
Lab. for Bioinf., Kyushu Univ., Kyushu
fYear
2009
fDate
16-19 March 2009
Firstpage
813
Lastpage
818
Abstract
The phenome analysis for the leaf morphogenesis shows greater advances than that for other species. Although the phenome analysis is useful for an elucidation of relationship between genotype and phenotype, it is difficult to identify a complicated biochemical reaction system between genotype and phenotype. In this study, we proposed a novel mathematical model for the time-variant morphogenesis of leaf primordiums to infer the complicated system, and discussed an availability of the proposed model on the elucidation of the morphogenesis. The mathematical model was designed by integrating a reaction-diffusion equation with a cellular automaton theory. The proposed model could realize several well-known complicated pattern formations involving reconnection phenomena of the leaf venation such as Arabidopsis thaliana´s and gingko´s leaf. Thus, the proposed model is available for the elucidation of the leaf morphogenesis.
Keywords
biochemistry; botany; cellular automata; reaction-diffusion systems; spatiotemporal phenomena; biochemical reaction system; cellular automaton theory; genotype; leaf venation; mathematical modeling; phenome analysis; phenotype; reaction-diffusion equation; spatiotemporal leaf primordium development; time-variant morphogenesis; Automata; Biochemical analysis; Bioinformatics; Biological system modeling; Blades; Genomics; Mathematical model; Organisms; Pattern formation; Spatiotemporal phenomena; Cellular automata; Leaf shape; Leaf venation; Morphogenesis; Pattern formation; Reaction-diffusion equation;
fLanguage
English
Publisher
ieee
Conference_Titel
Complex, Intelligent and Software Intensive Systems, 2009. CISIS '09. International Conference on
Conference_Location
Fukuoka
Print_ISBN
978-1-4244-3569-2
Electronic_ISBN
978-0-7695-3575-3
Type
conf
DOI
10.1109/CISIS.2009.46
Filename
5066883
Link To Document