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References
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Albasha R, Fournier C, Pradal C, Chelle M, Prieto J, Louarn G, Simonneau T, Lebon E. 2019.
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HydroShoot: a functional-structural plant model for simulating hydraulic structure, gas and energy exchange
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dynamics of complex plant canopies under water deficit - application to grapevine (Vitisvinifera L.)
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in silico Plants, diz007, https://doi.org/10.1093/insilicoplants/diz007
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Evers J, Vos J, Yin X, Romero P, van der Putten P, Struik P. 2010.
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Simulation of wheat growth and development based on organ-level photosynthesis and assimilate allocation.
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Journal of Experimental Botany 61: 2203–2216
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Farquhar G, von Caemmerer S, Berry J. 1980.
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A biochemical model of photosynthetic CO2 assimilation in leaves of C3 species.
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Planta 149: 78–90.
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Leuning R. 1995.
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A critical appraisal of a combined stomatal-photosynthesis model for C3 plants.
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Plant, Cell and Environment 18: 339–355.
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Nobel P. 2005.
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Temperature and energy budgets. In Nobel S, eds. Physicochemical and Environmental Plant Physiology.
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Elsevier Academic Press.
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Prieto J, Louarn G, Perez Peña J, Ojeda H, Simonneau T, Lebon E. 2012.
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A leaf gas exchange model that accounts for intra-canopy variability by considering leaf nitrogen content and
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local acclimation to radiation in grapevine (Vitis vinifera L.)
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Plant, Cell and Environment 35: 1313–1328.
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Tyree M, Sperry J. 1989.
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Vulnerability of xylem to cavitation and embolism.
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Annual review of plant physiology and plant molecular biology 40: 19–38.
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Tyree M, Zimmermann M. 2002.
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Xylem structure and the ascent of sap, Springer Series in Wood Science.
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Yin X, Struik P. 2009.
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C3 and C4 photosynthesis models: An overview from the perspective of crop modelling.
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NJAS - Wageningen Journal of Life Sciences 57: 27–38.
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