J. Andrews, S. R. Adams, K. S. Burton, and C. E. Evered, Subcellular localization of peroxidase in tomato fruit skin and the possible implications for the regulation of fruit growth, J. Exp. Bot, vol.53, pp.2185-2191, 2002.

P. T. Austin, A. J. Hall, P. W. Gandar, I. J. Warrington, T. A. Fulton et al., A Compartment Model of the Effect of Early-season Temperatures on Potential Size and Growth of 'Delicious' Apple Fruits, Ann. Bot, vol.83, pp.129-143, 1999.

H. Bargel and C. Neinhuis, Tomato (Lycopersicon esculentum Mill.) fruit growth and ripening as related to the biochemical properties of fruit skin and isolated cuticle, J. Exp. Bot, vol.56, pp.1049-1060, 2005.

A. Bar-tal, S. Fishman, B. Aloni, and M. Génard, Simulation of environmental effects on Ca content in pepper fruit, Acta Hort, vol.507, pp.253-262, 1999.
URL : https://hal.archives-ouvertes.fr/hal-02766703

J. H. Bergervoet, H. A. Verhoeven, L. J. Gilissen, and R. J. Bino, High amounts of nuclear DNA in tomato (Lycopersicon esculentum Mill.) pericarp. Plant Sc, vol.116, pp.141-145, 1996.

N. Bertin, S. Fishman, and M. Génard, A model for early stage of tomato fruit development:cell multiplication and cessation of the cell proliferative activity, Ann. Bot, vol.92, pp.65-72, 2003.
URL : https://hal.archives-ouvertes.fr/hal-02682162

P. Bussières, Water import rate in tomato fruit: a resistance model, Ann. Bot, vol.73, pp.75-82, 1994.

P. Bussières, Water import in the young tomato fruit limited by pedicel resistance and calyx transpiration, Funct. Plant Biol, vol.29, pp.631-641, 2002.

C. Cheniclet, W. Y. Rong, M. Causse, N. Frangne, L. Bolling et al., Cell expansion and endoreduplication show a large genetic variability in pericarp and contribute strongly to tomato fruit growth, Plant Physiol, vol.139, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02679827

A. Ciliberto and J. J. Tyson, Mathematical model for early development of the sea urchin embryo, Bulletin of Mathematical Biology, vol.62, pp.37-59, 2000.

F. D'amato, Endopolyploidy as a factor in plant tissue development, Caryologia, vol.17, pp.41-52, 1964.

J. N. Davies and G. E. Hobson, The constituents of tomato fruit -the influence of environment, nutrition and genotype, Crit. Rev. Food Sci. Nutr, vol.15, pp.205-280, 1981.

M. Lechaudel, M. Génard, F. Lescourret, L. Urban, and M. Jannoyer, Modelling effects of weather and source-sink relationships on mango fruit growth, Tree Physiol, vol.25, pp.583-597, 2005.

D. R. Lee, Vasculature of the abscission zone of tomato fruit: implications for transport, Can. J. Bot, vol.67, pp.1898-1902, 1989.

D. R. Lee, A unidirectional water flux model of fruit growth, Can. J. Bot, vol.68, pp.1286-1290, 1990.

H. Lee, D. Chiou, W. Chen, A. H. Markhart, Y. Chen et al., Dynamic of cell growth and endoreduplication during orchid flower development, Plant Sc, vol.166, pp.659-667, 2004.

C. Leonardi, A. Baille, and S. Guichard, Predicting transpiration of shaded and non shaded tomato fruits under greenhouse environments, Scientia Hortic-Amsterdam, vol.84, pp.297-307, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02689293

F. Lescourret and M. Génard, A virtual peach fruit model simulating changes in fruit quality during the final stage of fruit growth, Tree Physiol, vol.25, pp.1-13, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02675141

P. Lobit, M. Génard, B. H. Wu, P. Soing, and R. Habib, Modelling citrate metabolism in fruits: response to growth and temperature, J Exp. Bot, vol.54, pp.2489-2501, 2003.

P. Lobit, M. Génard, P. Soing, and R. Habib, Modelling malic acid accumulation in fruits: relationships with organic acids, potassium, and temperature, J Exp. Bot, vol.57, pp.1471-1483, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02663973

J. A. Lockart, An analysis of irreversible plant cell elongation, J. Theor. Biol, vol.8, pp.264-275, 1965.

L. F. Marcelis, Simulation of biomass allocation in greenhouse crops -a review, Acta Hort, vol.328, pp.49-67, 1993.

L. F. Marcelis and H. Gijzen, Evaluation under commercial conditions of a model of prediction of the yield and quality of cucumber fruits, Scientia Hortic. Amsterdam, vol.76, pp.171-181, 1998.

J. E. Melaragno, B. Mehrotra, and A. W. Coleman, Relationship between endopolyploidy and cell size in epidermal tissue of Arabidopsis, The Plant Cell, vol.5, pp.1661-68, 1993.

D. M. Mingo, M. A. Bacon, and W. J. Davies, Non-hydraulic regulation of fruit growth in tomato plants (Lycopersicon esculentum cv. Solairo) growing in drying soil, J. Exp. Bot, vol.54, pp.1205-1212, 2003.

Y. Mizukami, A matter of size: developmental control of organ size in plants, Curr. Opin. Plant Biol, vol.4, pp.533-539, 2001.

J. K. Ortega, Governing equations for plant cell growth, Physiol. Plantarum, vol.79, pp.116-121, 1990.

B. Quilot, J. Kervella, M. Génard, and F. Lescourret, Analysing the genetic control of peach fruit quality through an ecophysiological model combined with a QTL approach, J. Exp. Bot, vol.56, pp.3083-3092, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02675468

M. Reymond, B. Muller, A. Leonardi, A. Charcosset, and F. Tardieu, Combining quantitative trait loci analysis and an ecophysiological model to analyze the genetic variability of the reponses of maize leaf growth to temperature and water deficit, Plant Physiol, vol.131, pp.664-675, 2003.

D. Schwarz, H. P. Kläring, K. T. Ingram, and Y. C. Hung, Models-based control of nutrient solution concentration influences tomato growth and fruit quality, J. Am. Soc. Hortic. Sci, vol.126, pp.778-784, 2001.

L. Schweizer, G. L. Yerk-davis, R. L. Phillips, F. Srienc, and R. J. Jones, Dynamic of maize endosperm development and DNA endoreduplication, Proc. Natl. Acad. Sci, vol.92, pp.7070-7074, 1995.

I. Seginer, P. Bleyaert, and M. Breugelmans, Modelling ontogenic changes of nitrogen and water content in lettuce, Ann. Bot, vol.94, pp.393-404, 2004.

R. Shewfelt, What is quality?, Postharvest Biol. Tec, vol.15, pp.197-200, 1999.

P. C. Struik, X. Yin, and P. De-visser, Complex quality traits: now time to model, Trends Plant Sci, vol.10, pp.513-516, 2005.

F. Tardieu, Virtual plants: modeling as a tool for the genomics of tolerance to water deficit, Trends Plant Sci, vol.8, pp.9-14, 2003.

D. S. Thompson, W. J. Davies, and L. C. Ho, Regulation of tomato fruit growth by epidermal cell walls enzymes, Plant Cell Environ, vol.21, pp.589-599, 1998.

J. H. Thornley, Mathematics and Plant Physiology, pp.49-65, 1981.

J. Traas, M. Hülskamp, E. Gendreau, and H. Höfte, Endoreduplication and development: rule without dividing, Curr. Opin. Plant Biol, vol.1, pp.498-503, 1998.
URL : https://hal.archives-ouvertes.fr/hal-02698765

G. A. Tucker, Introduction, Biochemistry of fruit ripening, pp.1-51, 1993.

X. Yin, P. Stam, C. J. Dourleijn, and M. J. Kropff, AFLP mapping of quantitative trait loci for yield-determining physiological characters in spring barley, Theoretical and Applied Genetics, vol.99, pp.244-253, 1999.

X. Yin, P. C. Struik, and M. J. Kropff, Role of crop physiology in predicting geneto-phenotype relationships, Trends Plant Sci, vol.9, pp.426-432, 2004.

N. Bertin, P. Bussieres, and M. Génard, Ecophysiological models of quality: a challenge for peach and tomato, Acta Horticulturae, issue.718, pp.633-641, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02653954

, Version définitive du manuscrit publiée dans / Final version of the manuscript published in : Acta Horticulturae, vol.718, pp.633-641, 2006.

, Journal