178
J.S. Pereira
Jordan WR (1983) Whole plant response to water deficits: an overview. In: Taylor HM,
Jordan WR, Sinclair TR (eds) Limiatations to efficient water use in crop production.
Am Soc Agronomy Madison, Wisc (USA), pp 289-317
King RW, Wardlaw IF, Evans LT (1967) Effect of assimilated utilisation on photosynthetic
rate in wheat. Planta 77: 261-276
Konings H (1989) Physiological and morphological differences between plants with a high
NAR or a high LAR as related to environmental conditions. In: Lambers H, Cambridge
ML, Konings H, Pons TL (eds) Causes and consequences of variation in growth rate
and productivity of higher plants. SPB Academic Publ, The Hague, pp 101-123
Komer CH, Scheel JA, Bauer H (1979) Maximum leaf diffusive conductance in vascular
plants. Photosynthetica 13: 45-82
Kozlowski TT, Keller T (1966) Food relations of woody plants. Bot Rev 32: 293-382
Krapp A, Quick WP, Stitt M (1991) Ribulose-l,5-bisphosphate carboxylase-oxygenase,
other Calvin-cycle enzymes and chlorophyll decrease when glucose is supplied to
mature spinach leaves via the transpiration stream. Planta 186: 58-69
Kriedemann PE (1986) Stomatal and photosynthetic limitations to leaf growth. Aust J
Plant Physiol 13: 15-31
Lambers H, Freijsen N, Poorter H, Hirose T, van den Werf A (1990) Analysis of growth
based on net assimilation rate and nitrogen productivity. Their physiological background. In: Lambers H, Cambridge ML, Konings H, Pons TL (eds) Causes and
consequences of variation in growth rate and productivity of higher plants. SPB
Academic Publ, The Hague, pp 1-17
Larcher W (1973) Oekologie der Pflanzen. Ulmer, Stuttgart
Lauer MJ, Shibles R (1987) Soybean leaf photosynthetic response to changing sink
demand. Crop Sci 27: 1197-1201
Linder S (1985) Potential and actual production in Australian forest stands. In: Landsberg
JJ, Parsons W (eds) Research for Forest 'Management CSIRO, Melbourne, Australia,
pp 11-35
Ludlow MM, Bjorkman 0 (1984) Paraheliotropic leaf movements in Sirartro as a protective mechanism against drought-induced damage to primary photosynthetic reactions:
damage by excessive light and heat. Planta 161: 505-518
Madeira M, Pereira JS (1990) Productivity, nutrient immobilization and soil chemical
properties in an Eucalyptus globulus plantation under different irrigation and fertilization regimes. Water Air Soil Pollut 54: 621-634
Marshall B, Squire GR, Terry AC (1991) Effect of temperature of interception and
conversion of solar radiation by stands of groundnut. J Exp Bot
Masle J, Farquhar G (1988) Effects of soil strength on the relation of water-use efficiency
and growth to carbon isotope discrimination in wheat seedlings. Plant Physiol 86:
32-38
McDonald AJS, Lohamar T, Ericsson A (1986) Growth response to step-decrease in
nutrient availability in small birch (Betula pendula Roth). Plant Cell Environ 9: 427-432
Mebrahtu T, Hanover JW (1991) Family variations in gas exchange, growth and leaf traits
of black locust half-sib families. Tree Physiol 8: 185-193
Metcalfe J, Davies WJ, Pereira JS (1990) Leaf growth of Eucalyptus globulus seedlings
under water deficit. Tree Physiol 6: 221- 227
Millard P (1988) The accumulation and storage of nitrogen by herbaceous plants. Plant
Cell Environ 11: 1-8
Millard P, Proe MF (1991) Leaf demography and the seasonal internal cycling in sycamore (Acer pseudoplatanus L.) seedlings in relation to nitrogen supply. New Phytol
117: 87-96
Monteith JL (1977) Climate and efficiency of crop production in Britain. Philos Trans R
Soc Lond B 281: 277-294
Monteith JL (1981) Does light limit crop production? In: Johnson CB (ed) Physiological
processes limiting plant productivity. Butterworths, London, pp 23-38
Mooney HA, Ferrar PJ, Slatyer RO (1978) Photosynthetic capacity and carbon allocation
patterns in diverse growth forms of Eucalyptus. Oecologia 36: 103-111
Précédent

- 196/580

Suivant