DocumentCode
1931460
Title
Using Greenlab Model to Assist to Analyse Rice Morphogenesis: Case of PhylloMutant and Its Wild Type ´Nippon Bare´
Author
Song, Yuning ; Luquet, D. ; Mathieu, Alessandro ; de Reffye, P. ; Dingkuhn, M.
Author_Institution
Inst. of Botany, Chinese Acad. of Sci., Beijing
fYear
2006
fDate
13-17 Nov. 2006
Firstpage
169
Lastpage
174
Abstract
The architectural mathematical model Greenlab was tested for assisting plant phenotyping on two rice genotypes: Nippon Bare (NB) and Phyllo, its organogenesis mutant. A 50 days experiment was realized to compare, at organ level on NB, tiller pruned NB and Phyllo, morphogenesis, sugar partitioning and assimilation rate. Phenotypic data were used to optimize Greenlab parameters, considered then as process based traits. Experimental analysis showed weak modifications of pruned rice morphogenesis occurred. In contrast, Phyllo showed quicker organogenesis, small organs, no tillering, half the assimilation rate of NB, modified root sugar metabolism. Greenlab fittings on observations were good except for NB, mainly because of the difficulty of correctly optimizing numerous small leaf sinks (generated by process) compared to a single big root sink compartment. However, Greenlab successfully sensed the phenotypic differences underlined experimentally, in particular, modified carbon sink to source relationships for Phyllo. Modeling analysis of rice tillering cases shows that Greenlab has a great potential as heuristic approaches to be applied to plant phenotyping, more case studies are proposed to testing the model as a suitable tool to assist to screen plant phenotype.
Keywords
agriculture; genetics; Greenlab model; Nippon Bare; Phyllo mutant; architectural mathematical model; experimental analysis; organogenesis mutant; phenotypic data; rice genotypes; rice morphogenesis; root sugar metabolism; Analytical models; Biochemistry; Crops; Functional analysis; Mathematical model; Niobium; Stability; Testing; Visualization; Working environment noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Plant Growth Modeling and Applications, 2006. PMA '06. Second International Symposium on
Conference_Location
Beijing
Print_ISBN
978-0-7695-2851-9
Type
conf
DOI
10.1109/PMA.2006.13
Filename
4548365
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