B. Andrieu, B. Moulia, G. Maddonni, C. Birch, G. Sonohat et al., Plasticity of plant architecture in response to density: using maize as a model, IV International Workshop on Functional Structural Plant Models (FSMP04), pp.141-145, 2004.
URL : https://hal.archives-ouvertes.fr/hal-01190915

A. D. Ashok and P. Rengasamy, Effect of nitrogen fertigation at different levels and sources on the growth of cut rose cv. First Red under greenhouse conditions, South Indian Hortic, vol.48, pp.139-141, 2000.

R. Baccar, C. Fournier, T. Dornbusch, B. Andrieu, D. Gouache et al., Modelling the effect of wheat canopy architecture as affected by sowing density on Septoria tritici epidemics using a coupled epidemic-virtual plant model, Ann. Bot, vol.108, pp.1179-1194, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00941163

R. Boumaza, S. Demotes-mainard, L. Huché-thellier, V. Guérin, R. Boumaza et al., Sensory profiles and preference analysis in ornamental horticulture: the case of the rosebush, Food Qual. Prefer, vol.24, pp.987-997, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00729616

N. Bredmose, Effects of yearround supplementary lighting on shoot development, flowering and quality of two glasshouse rose cultivars, Sci. Hortic, vol.54, issue.93, pp.90084-90088, 1993.

N. Bredmose, J. Hansen, and J. Nielsen, Topophysic influences on rose bud and shoot growth and flower development are determined by endogenous axillary bud factors, III International Symposium on Rose Research and Cultivation, pp.177-183, 2001.

G. Buck-sorlin, . De, P. H. Visser, M. Henke, V. Sarlikioti et al., Towards a functional-structural plant model of cut-rose: simulation of light environment, light absorption, photosynthesis and interference with the plant structure, Ann. Bot, vol.108, pp.1121-1134, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01132295

R. I. Cabrera, Nitrogen balance for two container-grown woody ornamental plants, Sci. Hortic, vol.97, pp.151-157, 2003.

M. Chelle, Phylloclimate or the climate perceived by individual plant organs: what is it? How to model it? What for?, New Phytol, vol.166, pp.781-790, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02674939

J. M. Costa and E. Heuvelink, Modelling growth of the primary shoot of rose, Proceedings of the International Workshop on Models for Plant Growth and Control of Product Quality in Horticultural Production, pp.279-285, 2003.

E. Dayan, E. Presnov, and M. Fuchs, Prediction and calculation of morphological characteristics and distribution of assimilates in the ROSGRO model, Math. Comput. Simul, vol.65, pp.101-116, 2004.

S. Demotes-mainard, G. Guéritaine, R. Boumaza, P. Favre, V. Guérin et al., Coordinated development of the architecture of the primary shoot in bush rose, The Third International Symposium on Plant Growth Modeling, Simulation, Visualization and Applications, pp.214-221, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00729988

S. Demotes-mainard, L. Huché-thélier, P. Morel, R. Boumaza, V. Guérin et al., Temporary water restriction or light intensity limitation promotes branching in rose bush, Sci. Hortic, vol.150, pp.432-440, 2013.

M. A. Domagalska and O. Leyser, Signal integration in the control of shoot branching, Nat. Rev. Mol. Cell Biol, vol.12, pp.211-221, 2011.

G. A. Dosio, H. Rey, J. Lecoeur, N. G. Izquierdo, L. A. Aguirrezabal et al., A whole-plant analysis of the dynamics of expansion of individual leaves of two sunflower hybrids, J. Exp. Bot, vol.54, pp.2541-2552, 2003.
URL : https://hal.archives-ouvertes.fr/hal-02682069

M. Dracup and E. J. Kirby, Patterns of growth and development of leaves and internodes of narrow-leafed lupin, Field Crops Res, vol.34, issue.93, p.90008, 1993.

J. Evers, J. Vos, C. Fournier, B. Andrieu, M. Chelle et al., Towards a generic architectural model of tillering in Gramineae, as exemplified by spring wheat (Triticum aestivum), New Phytol, vol.166, pp.801-812, 2005.

C. Fournier, B. Andrieu, S. Ljutovac, and S. Saint-jean, ADEL-Wheat: a 3D Architectural model of wheat development, International Symposium on Plant Growth Modeling, Simulation, Visualization and Their Applications, pp.54-63, 2003.
URL : https://hal.archives-ouvertes.fr/hal-00909184

C. Fournier, J. Durand, S. Ljutovac, R. Schäufele, F. Gastal et al., A functionalstructural model of elongation of the grass leaf and its relationships with the phyllochron, New Phytol, vol.166, pp.881-894, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02680502

M. Gao, G. W. Van-der-heijden, J. Vos, B. A. Eveleens, and L. F. Marcelis, Estimation of leaf area for large scale phenotyping and modeling of rose genotypes, Sci. Hortic, vol.138, pp.227-234, 2012.

H. Gautier, R. Mech, P. Prusinkiewicz, and C. Varlet-grancher, 3D architectural modelling of aerial photomorphogenesis in white Clover (Trifolium repens L.) using L-systems, Ann. Bot, vol.85, pp.359-370, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02690160

T. Girault, F. Abidi, M. Sigogne, S. Pelleschi-travier, R. Boumaza et al., Sugars are under light control during bud burst in Rosa sp, Plant Cell Environ, vol.33, pp.1339-1350, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00729623

T. Girault, V. Bergougnoux, D. Combes, J. D. Viemont, and N. Leduc, Light controls shoot meristem organogenic activity and leaf primordia growth during bud burst in Rosa sp, Plant Cell Environ, vol.31, pp.1534-1544, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02663838

C. Granier and F. Tardieu, Is thermal time adequate for expressing the effects of temperature on sunflower leaf development?, Plant Cell Environ, vol.21, pp.695-703, 1998.
URL : https://hal.archives-ouvertes.fr/hal-02695497

C. Granier and F. Tardieu, Leaf expansion and cell division are affected by reducing absorbed light before but not after the decline in cell division rate in the sunflower leaf, Plant Cell Environ, vol.22, pp.1365-1376, 1999.
URL : https://hal.archives-ouvertes.fr/hal-02684596

C. Henry, A. Rabot, M. Laloi, E. Mortreau, M. Sigogne et al., Regulation of RhSUC2, a sucrose transporter, is correlated with the light control of bud burst in Rosa sp, Plant Cell Environ, vol.34, pp.1776-1789, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01168877

D. A. Hopper and P. A. Hammer, Regression models describing Rosa hybrida response to day/night temperature and photosynthetic photon flux, J. Am. Soc. Hortic. Sci, vol.116, pp.609-617, 1991.

D. A. Hopper, P. A. Hammer, and J. R. Wilson, A simulation model of Rosa hybrida growth response to constant irradiance and day and night temperatures, J. Am. Soc. Hortic. Sci, vol.119, pp.903-914, 1994.

L. Huché-thélier, R. Boumaza, S. Demotes-mainard, A. Canet, R. Symoneaux et al., Nitrogen deficiency increases basal branching and modifies visual quality of the rose bushes, Sci. Hortic, vol.130, pp.325-334, 2011.

K. Kahlen, 3D architectural modelling of greenhouse cucumber (Cucumis sativus L.) using L-systems, Proceedings of the IIIrd International Symposium on Models for Plant Growth, pp.51-58, 2006.

K. Kahlen and H. Stützel, Modelling photo-modulated internode elongation in growing glasshouse cucumber canopies, New Phytol, vol.190, pp.697-708, 2011.

K. Kahlen, D. Wiechers, and H. Stuetzel, Modelling leaf phototropism in a cucumber canopy, 2008.

, Funct. Plant Biol, vol.35, pp.876-884

T. Lafarge and F. Tardieu, A model co-ordinating the elongation of all leaves of a sorghum cultivar was applied to both Mediterranean and Sahelian conditions, J. Exp. Bot, vol.53, pp.715-725, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02673557

J. H. Lieth and C. C. Pasian, A simulation model for the growth and development of flowering rose shoots, Sci. Hortic, vol.46, pp.109-128, 1991.

H. Linhart and W. Zucchini, Model Selection, 1986.

F. M. Maas and E. J. Bakx, Effects of light on growth and flowering of Rosa hybrida 'Mercedes, 1995.

, J. Am. Soc. Hortic. Sci, vol.120, pp.571-576

Y. Mor and A. H. Halevy, Dual effect of light on flowering and sprouting of rose shoots, Physiol. Plant, vol.61, pp.119-124, 1984.

P. Morel, L. Crespel, G. Galopin, and B. Moulia, Effect of mechanical stimulation on the growth and branching of garden rose, Sci. Hortic, vol.135, pp.59-64, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00841809

P. Morel, G. Galopin, and N. Dones, Using architectural analysis to compare the shape of two hybrid tea rose genotypes, Sci. Hortic, vol.120, pp.391-398, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00730104

A. Morisot, PP.Rose': an empirical model to predict the potential yield of cut roses, Acta Hortic, vol.424, pp.87-93, 1996.
URL : https://hal.archives-ouvertes.fr/hal-02687685

L. Mündermann, Y. Erasmus, B. Lane, E. Coen, and P. Prusinkievicz, Quantitative modeling of arabidospsis development, Plant Physiol, vol.139, pp.960-968, 2005.

L. R. Oki, N. S. Mattson, and J. H. Lieth, Predicting stem length of cut flower roses at harvest using stem elongation rates in relationship to developmental events, III International Symposium on Models for Plant Growth, Environmental Control and Farm Management in Protected Cultivation, pp.113-120, 2006.

A. Rabot, C. Henry, K. Ben-baaziz, E. Mortreau, W. Azri et al., Insight into the role of sugars in bud burst under light in the rose, Plant Cell Physiol, vol.53, pp.1068-1082, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00841828

N. C. Rajapakse, J. W. Kelly, Y. Rouphael, A. H. Mouneimne, A. Ismail et al., A study of ryegrass architecture as a selfregulated system, using functionalstructural plant modelling, Funct. Plant Biol, vol.56, pp.911-924, 1994.

S. Xue, D. Q. Han, Y. J. Yu, Y. Steinberger, L. P. Han et al., Dynamics in elongation and dry weight of internodes in sweet sorghum plants, Field Crops Res, vol.126, pp.37-44, 2012.

S. Yang, J. Logan, and D. L. Coffey, Mathematical formulae for calculating the base temperature for growing degree days, 1995.

, Agric. For. Meteorol, vol.74, pp.61-74