Interactive effects of lateral shade and wind on stem allometry, biomass allocation, and mechanical stability in Abutilon theophrasti (Malvaceae)
- 1 October 2002
- journal article
- Published by Wiley in American Journal of Botany
- Vol. 89 (10) , 1609-1615
- https://doi.org/10.3732/ajb.89.10.1609
Abstract
The effects of lateral shade and wind on stem allometry, whole-plant biomass allocation, and mechanical stability were examined for Abutilon theophrasti in a fully factorial glasshouse experiment. Lateral shade from neighboring plants increased stem height by 33% relative to control plants grown individually, despite a decrease in plant dry mass. Intermittent wind decreased stem height by 18% in unshaded plants, but by only 3% in shaded plants. Surprisingly, both lateral shade and wind caused decreases in stem diameter, even with diameter controlled for height, resulting in low diameter : height ratios in wind-treated plants relative to untreated plants. Under shade, wind-treated plants had higher root allocation than untreated plants, which allowed wind-treated shade plants to compensate for a low diameter : height ratio. This did not occur in the absence of shade, where stem tissue density and root allocation of wind-treated plants did not exceed that of untreated plants. Nevertheless, wind-treated plants experienced low drag relative to untreated plants due to a lower leaf area. Consequently, stem deflections of wind-treated plants did not exceed those of untreated plants at any given windspeed. Our results document a complex interaction between shade and wind on plant morphology and suggest that the nature of this interaction is generally that lateral shade acts to reduce or eliminate thigmomorphogenic responses.Keywords
Funding Information
- Natural Sciences and Engineering Research Council of Canada
This publication has 44 references indexed in Scilit:
- The interpretation of stem diameter–height allometry in trees: biomechanical constraints, neighbour effects, or biased regressions?Ecology Letters, 1999
- On the Relationship between Shade Tolerance and Shade Avoidance Strategies in Woodland PlantsOikos, 1997
- Hypotheses for the Evolution of Apical Dominance in Plants: Implications for the Interpretation of OvercompensationOikos, 1995
- Competition and Allometry in Three Species of Annual PlantsEcology, 1992
- Growth, wood density, and ethylene production in response to mechanical perturbation in PinustaedaCanadian Journal of Forest Research, 1990
- Tree Form, Height Growth, and Susceptibility to Wind Damage in Acer SaccharumEcology, 1986
- On the insensitivity of height growth to spacingForest Ecology and Management, 1985
- Effects of seismic stress on the vegetative growth of Glycine max (L.) Merr. cv. Wells IIPlant, Cell & Environment, 1985
- Uprooting and snapping of trees: structural determinants and ecological consequencesCanadian Journal of Forest Research, 1983
- The theory of tree bole and branch formRadiation and Environmental Biophysics, 1978