Influence of Irradiation, Soil Water Potential, and Leaf Temperature on Leaf Morphology of a Desert Broadleaf, Encelia farinosa Gray (Compositae)
Smith WK and Nobel PS. 1978. Influence of Irradiation, Soil Water Potential, and Leaf Temperature on Leaf Morphology of a Desert Broadleaf, Encelia farinosa Gray (Compositae). American Journal of Botany. 65(4):429-432
Laboratory experiments were performed to evaluate observed seasonal changes in leaf morphology of the desert perennial shrub, Encelia farinosa Gray. Plants were grown under low or high conditions of photosynthetically active irradiation, soil water potential (Ψsoil), and leaf temperature (8 different experimental regimes) The relative growth rate, leaf water vapor conductance, leaf water potential, and leaf length were all greater for the high Ψsoil regimes, the largest leaves occurring at low irradiation. High irradiation during growth led to thicker leaves with a higher internal to external leaf area ratio (Ames/A); low Ψsoil tended to increase Ames/A somewhat. High irradiation also led to decreased absorptance to solar irradiation caused by increased pubescence High leaf temperature during development resulted in slightly smaller, thicker leaves with higher Ames/A. Thus, irradiation appeared to have its major influence on leaf thickness, Ames/A, and absorptance, with a secondary effect on leaf length; Ψsoil affected primarily leaf length, growth rate, and water status, and secondarily Ames/A. Results are discussed with regard to recent ecophysiological studies on the observed seasonal changes in leaf morphology of E farinosa
- Type
- Journal Article
- Authors
- Smith, William; Nobel, Park
- Units
- DEVA , SODN
- Keywords
- Asteraceae (Sunflowers), Distribution (Biodiversity), ecophysiological studies, Encelia farinosa (Goldenhills White Brittlebush), Growth rates, Plant Physiology, Plant Studies, Presence (Biodiversity), Taxa Links To References