Leaf optical properties in higher plants: linking spectral characteristics to stress and chlorophyll concentration
Оптические свойства листьев высших растений: связь спектральных характеристик со стрессом и концентрацией хлорофилла
2001-04-01
SCID: 54.1/8t63rg55
Discuss with AI
700 nm reflectancechlorophyll concentrationleaf optical propertiesphysiological stressspectral reflectance
Figures from the paper
Abstract (AI)
A number of studies have linked responses in leaf spectral reflectance, transmittance, or absorptance to physiological stress. A variety of stressors including dehydration, flooding, freezing, ozone, herbicides, competition, disease, insects, and deficiencies in ectomycorrhizal development and N fertilization have been imposed on species ranging from grasses to conifers and deciduous trees. In all cases, the maximum difference in reflectance within the 400-850 nm wavelength range between control and stressed states occurred as a reflectance increase at wavelengths near 700 nm. In studies that included transmittance and absorptance as well as reflectance, maximum differences occurred as increases and decreases, respectively, near 700 nm. This common optical response to stress could be simulated closely by varying the chlorophyll concentration of model leaves (fiberglass filter pads) and by the natural variability in leaf chlorophyll concentrations in senescent leaves of five species. The optical response to stress near 700 nm, as well as corresponding changes in reflectance that occur in the green-yellow spectrum, can be explained by the general tendency of stress to reduce leaf chlorophyll concentration.
Key Findings
1
Across diverse stressors and plant species, the largest 400–850 nm spectral difference between control and stressed leaves was a reflectance increase near 700 nm.
2
Natural chlorophyll variability in senescent leaves from five species similarly reproduced the observed optical responses.
3
Stress-related optical changes near 700 nm and in the green-yellow spectrum are explained by the general tendency of stress to reduce leaf chlorophyll concentration.
4
The common near-700 nm stress response was closely simulated by varying chlorophyll concentration in model leaves.
5
When measured, stress caused transmittance increases and absorptance decreases near 700 nm, alongside the reflectance increase.
Research Object
Leaf optical properties of higher plants under physiological stress
Research Subject
The relationship between stress-induced changes in leaf reflectance, transmittance, and absorptance spectra and reductions in chlorophyll concentration, particularly near 700 nm
Publication Details
Publication Date
2001-04-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest