160
Anna Sala
References
Ball JT, Woodrow IE, Berry JA (1987) A model predicting stomatal conductance and its contribution to the control of photosynthesis under different environmental conditions. In: Binggins
IT (ed) Progress in photosynthesis research, vol IV 5. Martinus Nijhoff, Dordrecht, pp 221-224
Beven K, Kirkby MJ (1979) A physically based, variable contributing area model of basin hydrology. Hydrol Sci Bull 24:43-69
Beyschlag W, Pfanz H, Ryel RJ (1992) Stomatal patchiness in Mediterranean evergreen sc1erophylls: phenomenology and consequences for the interpretation of midday depression in
photosynthesis and transpiration. Planta 187:546-553
Burriel JA, Calvet S, Sala A, Gracia CA (1993) Angulo foliar en Quercus ilex: modulacion por el
ambiente, y contribucion a la economia hidrica de la planta. In: Silva FJ, Vega G (eds) Congr
Forestal Espano!. Ponencias y Comunicaciones, vol 1. Xunta de Galicia, Lourizan, Pontevedra, pp 225-232
Caldwell MM, Meister HP, Tenhunen JD, Lange OL (1986) Canopy structure, light microclimate
and leaf gas exchange of Quercus coccifera 1. in a Portuguese macchia: measurements in
different canopy layers and simulations with a canopy mode!. Trees 1:25-41
Castell C, Terradas J, Tenhunen JD (1994) Water relations, gas exchange, and growth of resprouts
and mature plant shoots of Arbutus unedo 1. and Quercus ilex 1. Oecologia 98:201-211
Eckardt FE, Berger A, Methy M, Heim G, Sauvezon R (1978) Interception de !'energie rayonnante, echanges de COl> regime hydrique et production chez differents types de vegetation
sous climat mediterraneen. In: Moyse A (ed) Les processus de la production vegetale primairie. Gauthier Villars, Paris, pp 1-75
Epron D, Dreyer E (1993) Photosynthesis of oak leaves under water stress: maintenance of high
photochemical efficiency of photosystem II and occurrence of non-uniform CO2 assimilation. Tree Physiol13:107-117
Farquhar GD, Von Caemmerer S (1982) Modeling of photosynthetic response to environment.
In: Lange OL, Nobel PS, Osmond CB, Ziegler H (eds) Encyclopedia of plant physiology, vol
12B, Physiological Plant Ecology II, Water relations and carbon assimilation. Springer, Berlin, pp 549-587
Field C (1983) Allocating leaf nitrogen for the maximization of carbon gain: leaf age as a control
on allocation program. Oecologia 56:341-347
Gratani L (1993) Response to microclimate of morphological leaf attributes, photosynthetic and
water relations of evergreen sclerophyllous shrub species. Photosynthetica 29:573-582
Gratani L (1996) Leaf and shoot growth dynamics of Quercus ilex 1. Acta OecoI17:17-27
Gratani L, Fiorentino E (1988) Leaf area index for Quercus ilex 1. high maquis. Photosynthetica
22:458
Harley PC, Tenhunen JD (1991) Modeling the photosynthetic response of C3 leaves to environmental factors. In: Boote KJ, Loomis RS (eds) Modeling crop photosynthesis - from biochemistry to canopy. ASA, Madison, Wisconsin, pp 17-39
Kaiser W (1987) Effects of water deficit on photosynthetic capacity. Physiol Plant 71:142-149
Larcher W, Tisi F (1990) Bioclima invernale e rendimento carbonico di Quercus ilex al limite
settentrionale delle leccete prealpine. Atti Accad Naz Lincei Mem Lincee Sci Fis Nat Ser IX (1)
Fac 1:1-22
Pinol J (1990) Hidrologia i biogeoquimica de conques forestades de les Muntanyes de Prades.
PhD Thesis, University of Barcelona, Barcelona
Pitacco A, Gallinaro N, Giulivo C (1992) Evaluation of actual evapotranspiration of a Quercus
ilex 1. stand by the Bowen ratio-energy budget method. Vegetatio 99-100:163-168
Rambal S (1993) The differential role of mechanisms for drought resistance in a Mediterranean
evergreen shrub: a simulation approach. Plant Cell Environ 16: 35-44
Rambal S, Damesin C, Joffre R, Methy M, Lo Seen D (1996) Optimization of carbon gain in
canopies of Mediterranean evergreen oaks. Ann Sci For 53:547-560
Anna Sala
References
Ball JT, Woodrow IE, Berry JA (1987) A model predicting stomatal conductance and its contribution to the control of photosynthesis under different environmental conditions. In: Binggins
IT (ed) Progress in photosynthesis research, vol IV 5. Martinus Nijhoff, Dordrecht, pp 221-224
Beven K, Kirkby MJ (1979) A physically based, variable contributing area model of basin hydrology. Hydrol Sci Bull 24:43-69
Beyschlag W, Pfanz H, Ryel RJ (1992) Stomatal patchiness in Mediterranean evergreen sc1erophylls: phenomenology and consequences for the interpretation of midday depression in
photosynthesis and transpiration. Planta 187:546-553
Burriel JA, Calvet S, Sala A, Gracia CA (1993) Angulo foliar en Quercus ilex: modulacion por el
ambiente, y contribucion a la economia hidrica de la planta. In: Silva FJ, Vega G (eds) Congr
Forestal Espano!. Ponencias y Comunicaciones, vol 1. Xunta de Galicia, Lourizan, Pontevedra, pp 225-232
Caldwell MM, Meister HP, Tenhunen JD, Lange OL (1986) Canopy structure, light microclimate
and leaf gas exchange of Quercus coccifera 1. in a Portuguese macchia: measurements in
different canopy layers and simulations with a canopy mode!. Trees 1:25-41
Castell C, Terradas J, Tenhunen JD (1994) Water relations, gas exchange, and growth of resprouts
and mature plant shoots of Arbutus unedo 1. and Quercus ilex 1. Oecologia 98:201-211
Eckardt FE, Berger A, Methy M, Heim G, Sauvezon R (1978) Interception de !'energie rayonnante, echanges de COl> regime hydrique et production chez differents types de vegetation
sous climat mediterraneen. In: Moyse A (ed) Les processus de la production vegetale primairie. Gauthier Villars, Paris, pp 1-75
Epron D, Dreyer E (1993) Photosynthesis of oak leaves under water stress: maintenance of high
photochemical efficiency of photosystem II and occurrence of non-uniform CO2 assimilation. Tree Physiol13:107-117
Farquhar GD, Von Caemmerer S (1982) Modeling of photosynthetic response to environment.
In: Lange OL, Nobel PS, Osmond CB, Ziegler H (eds) Encyclopedia of plant physiology, vol
12B, Physiological Plant Ecology II, Water relations and carbon assimilation. Springer, Berlin, pp 549-587
Field C (1983) Allocating leaf nitrogen for the maximization of carbon gain: leaf age as a control
on allocation program. Oecologia 56:341-347
Gratani L (1993) Response to microclimate of morphological leaf attributes, photosynthetic and
water relations of evergreen sclerophyllous shrub species. Photosynthetica 29:573-582
Gratani L (1996) Leaf and shoot growth dynamics of Quercus ilex 1. Acta OecoI17:17-27
Gratani L, Fiorentino E (1988) Leaf area index for Quercus ilex 1. high maquis. Photosynthetica
22:458
Harley PC, Tenhunen JD (1991) Modeling the photosynthetic response of C3 leaves to environmental factors. In: Boote KJ, Loomis RS (eds) Modeling crop photosynthesis - from biochemistry to canopy. ASA, Madison, Wisconsin, pp 17-39
Kaiser W (1987) Effects of water deficit on photosynthetic capacity. Physiol Plant 71:142-149
Larcher W, Tisi F (1990) Bioclima invernale e rendimento carbonico di Quercus ilex al limite
settentrionale delle leccete prealpine. Atti Accad Naz Lincei Mem Lincee Sci Fis Nat Ser IX (1)
Fac 1:1-22
Pinol J (1990) Hidrologia i biogeoquimica de conques forestades de les Muntanyes de Prades.
PhD Thesis, University of Barcelona, Barcelona
Pitacco A, Gallinaro N, Giulivo C (1992) Evaluation of actual evapotranspiration of a Quercus
ilex 1. stand by the Bowen ratio-energy budget method. Vegetatio 99-100:163-168
Rambal S (1993) The differential role of mechanisms for drought resistance in a Mediterranean
evergreen shrub: a simulation approach. Plant Cell Environ 16: 35-44
Rambal S, Damesin C, Joffre R, Methy M, Lo Seen D (1996) Optimization of carbon gain in
canopies of Mediterranean evergreen oaks. Ann Sci For 53:547-560
