articleTop 10% cited
Internal filters: Prospects for UV‐acclimation in higher plants
Physiologia Plantarum · 1983 · Vol. 58(3) · pp. 445–450
Martyn M. Caldwell✉(Utah State University)Ronald Robberecht(Utah State University)Stephan D. Flint(Utah State University)
Abstract
Wavelength‐selective absorption of solar radiation within plant leaves allows penetration of visible radiation (400–700 nm) to the chloroplasts, while removing much of the damaging ultraviolet‐B (UV‐B, 280–320 nm) radiation. Flavonoids are important in this wavelength‐selective absorption. Induction of flavonoid synthesis by solar radiation, and specifically by UV‐B radiation, is discussed as this relates to the potential acclimation of plants to enhanced solar UV‐B radiation that would result from stratospheric ozone reduction.
Light effects on plantsPhotosynthetic Processes and MechanismsPolar Research and EcologyRadiationAcclimatizationAbsorption (acoustics)OzoneWavelengthUltravioletUltraviolet radiationPenetration (warfare)Ozone layerPhotochemistry
Funding
- National Aeronautics and Space Administration
- U.S. Environmental Protection Agency
- Utah State University
Citations
603
FWCI
5.60
field-weighted impact
References
31
Percentile
96%
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Citations per year
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