Photosynthetic symmetry of sun and shade leaves of different orientations
- 1 June 1991
- journal article
- Published by Springer Nature in Oecologia
- Vol. 87 (1) , 51-57
- https://doi.org/10.1007/bf00323779
Abstract
The photosynthetic responses to light of leaves irradiated on the adaxial or abaxial surfaces, were measured for plants with contrasting leaf orientations. For vertical-leaf species of open habitats (Eryngium yuccifolium and Silphium terebinthinaceum), photosynthetic rates were identical when irradiated on either surface. However, for horizontal-leaf species of open habitats (Ambrosia trifida and Solidago canadensis), light-saturated rates of photosynthesis for adaxial irradiation were 19 to 37% higher than rates for abaxial irradiation. Leaves of understory plants (Asarum canadense and Hydrophyllum canadense) were functionally symmetrical although they had horizontal orientation. Photosynthetic rates were measured at saturating CO2, thus differences in the response to incident irradiance presumably resulted from complex interactions of light and leaf optical properties rather than from stomatal effects. Differences in absorptance (400–700 nm) among leaf surfaces were evident for horizontal-leaf species but the primary determinant of functional symmetry was leaf anatomy. Functionally symmetrical leaves had upper and lower palisade layers of equal thickness (vertical leaves of open habitats) or were composed primarily of a single layer of photosynthetic cells (horizontal leaves of understory habitats). Photosynthetic symmetry of vertical-leaf species may be an adaptation to maximize daily integrated carbon gain and water-use efficiency, whereas asymmetry of horizontal-leaf species may be an adaptation to maximize daily integrated carbon gain and photosynthetic nutrient-use efficiency.Keywords
This publication has 22 references indexed in Scilit:
- Ecophysiological consequences of non-random leaf orientation in the prairie compass plant, Silphium laciniatumOecologia, 1990
- PHYSIOLOGICAL AND MORPHOLOGICAL MODIFICATIONS OF PLANTAGO MAJOR (PLANTAGINACEAE) IN RESPONSE TO LIGHT CONDITIONSAmerican Journal of Botany, 1989
- Partitioning of Nitrogen Between and Within Leaves Grown Under Different IrradiancesFunctional Plant Biology, 1989
- Light and chlorophyll gradients within Cucurbita cotyledonsPlant, Cell & Environment, 1988
- Chlorophyll content and the light response curve of shade‐adapted conifer needlesPhysiologia Plantarum, 1987
- Influence of leaf size, orientation, and arrangement on temperature and transpiration in three high-elevation, large-leafed herbsOecologia, 1982
- POLAROGRAPHIC MEASUREMENT OF PHOTOSYNTHETIC OXYGEN EVOLUTION BY LEAF DISCSNew Phytologist, 1981
- Comparative Photosynthesis of Sun and Shade PlantsAnnual Review of Plant Physiology, 1977
- Optimum Lighting of Leaves1Crop Science, 1964
- COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN BETA VULGARISPlant Physiology, 1949