Annals of Botany 86: 821-831, 2000
© 2000 Annals of Botany Company
Dynamics of Vertical Leaf Nitrogen Distribution in a Vegetative Wheat Canopy. Impact on Canopy Photosynthesis
Laboratory of Theoretical Production Ecology, Wageningen University, P.O. Box 430, 6700 AK, Wageningen, The Netherlands Centre for Ecology and Hydrology, Edinburgh Research Station, Bush Estate, Penicuik, EH26 0QB, UK Plant Research International, P.O. Box 16, 6700 AA, Wageningen, The Netherlands
Received: 9 March 2000 ; Returned for revision: 16 May 2000 . Accepted: 22 June 2000
The development of vertical canopy gradients of leaf N has been regarded as an adaptation to the light gradient that helps to maximize canopy photosynthesis. In this study we report the dynamics of vertical leaf N distribution during vegetative growth of wheat in response to changes in N availability and sowing density. The question of to what extent the observed vertical leaf N distribution maximized canopy photosynthesis was addressed with a leaf layer model of canopy photosynthesis that integrates N-dependent leaf photosynthesis according to the canopy light and leaf N distribution. Plants were grown hydroponically at two amounts of N, supplied in proportion to calculated growth rates. Photosynthesis at light saturation correlated with leaf N. The vertical leaf N distribution was associated with the gradient of absorbed light. The leaf N profile changed during crop development and was responsive to N availability. At high N supply, the leaf N profiles were constant during crop development. At low N supply, the leaf N profiles fluctuated between more uniform and steep distributions. These changes were associated with reduced leaf area expansion and increasing N remobilization from lower leaf layers. The distribution of leaf N with respect to the gradient of absorbed irradiance was close to the theoretical optimum maximizing canopy photosynthesis. Sensitivity analysis of the photosynthesis model suggested that plants maintain an optimal vertical leaf N distribution by balancing the capacity for photosynthesis at high and low light. Copyright 2000 Annals of Botany Company
Canopy photosynthesis, leaf nitrogen distribution, nitrogen, Triticum aestivum L, wheat
![]()
CiteULike
Connotea
Del.icio.us What's this?
This article has been cited by other articles:
![]() |
J. Bertheloot, P. Martre, and B. Andrieu Dynamics of Light and Nitrogen Distribution during Grain Filling within Wheat Canopy Plant Physiology, November 1, 2008; 148(3): 1707 - 1720. [Abstract] [Full Text] [PDF] |
||||
![]() |
J.-L. DROUET and R. BONHOMME Effect of 3D Nitrogen, Dry Mass per Area and Local Irradiance on Canopy Photosynthesis Within Leaves of Contrasted Heterogeneous Maize Crops Ann. Bot., June 1, 2004; 93(6): 699 - 710. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. LOTSCHER, K. STROH, and H. SCHNYDER Vertical Leaf Nitrogen Distribution in Relation to Nitrogen Status in Grassland Plants Ann. Bot., November 1, 2003; 92(5): 679 - 688. [Abstract] [Full Text] [PDF] |
||||
![]() |
X. YIN, E. A. LANTINGA, A. H. C. M. SCHAPENDONK, and X. ZHONG Some Quantitative Relationships between Leaf Area Index and Canopy Nitrogen Content and Distribution Ann. Bot., June 1, 2003; 91(7): 893 - 903. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. Gastal and G. Lemaire N uptake and distribution in crops: an agronomical and ecophysiological perspective J. Exp. Bot., April 15, 2002; 53(370): 789 - 799. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. van Delden Yield and Growth Components of Potato and Wheat under Organic Nitrogen Management Agron. J., November 1, 2001; 93(6): 1370 - 1385. [Abstract] [Full Text] [PDF] |
||||



