Far-Red Light Reflection from Green Leaves and Effects on Phytochrome-Mediated Assimilate Partitioning under Field Conditions
- 1 October 1987
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 85 (2) , 350-354
- https://doi.org/10.1104/pp.85.2.350
Abstract
The influence of plant spacing and row orientation on spectral distribution of light received by growing soybean (Glycine max [L.] Merr.) plants was measured under field conditions. Light absorption, reflection and transmission of individual leaves showed that most of the blue and red was absorbed while most of the far-red was either reflected or transmitted. Plants growing in the field received different ratios of far-red relative to red, depending on nearness and/or orientation of other vegetation. Plants grown in close-spaced rows, or high population densities, received higher far-red/red ratios than did those grown in wide rows, or sparse populations. Heliotropic movements of the leaves also contributed to the far-red reflection patterns associated with row orientation. Under field conditions, differences in far-red/red ratios associated with nearness of competing vegetation became more pronounced with low solar angle near the end of the day. Plants exposed to far-red for 5 minutes at the end of each day in controlled environments, and those grown in close-spaced rows in the field, developed longer internodes and fewer branches. Red, far-red photoreversibility in the controlled environment study indicated involvement of phytochrome. Dry matter partitioning among plant components in the field was related to far-red/red light ratio received during growth and development.This publication has 4 references indexed in Scilit:
- Soybean Response to Rhizobium japonicumStrain, Row Orientation, and Irrigation1Agronomy Journal, 1985
- Chloroplast Structure and Starch Grain Accumulation in Leaves That Received Different Red and Far-Red Levels during DevelopmentPlant Physiology, 1984
- Morphology and Photosynthetic Efficiency of Tobacco Leaves That Received End-of-Day Red and Far Red Light during DevelopmentPlant Physiology, 1973
- Spectral Distribution of Light in a Tobacco Canopy and Effects of End-of-Day Light Quality on Growth and DevelopmentPlant Physiology, 1971