Influence of enhanced UV-B radiation on biomass allocation and pigment concentrations in leaves and reproductive structures of greenhouse-grown Brassica rapa
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Ecology,Plant Science,Ecology
Link
http://link.springer.com/content/pdf/10.1007/BF00044635.pdf
Reference39 articles.
1. Ballaré C. L., Barnes P. W. & Kendrick R. E. 1991. Photomorphogenic effects of UV-B radiation on hypocotyl elongation in wild-type and stable-phytochrome-deficient mutant seedlings of cucumber. Physiologia Plantarum 83: 652?658.
2. Ballaré C. L., Barnes P. W. & Flint S. D. 1995. Inhibition of hypocotyl elongation by ultraviolet-B radiation in de-etiolating tomato seedlings. I. The photoreceptor. Physiologia Plantarum 93: 548?592.
3. Barnes P. W., Jordan P. W., Gold W. G. & Flint S. D. 1988. Competition, morphology and canopy structure in wheat (Triticum aestivum L.) and wild oat (Avena fatua L.) exposed to enhanced ultraviolet-B radiation. Functional Ecology 2: 319?330.
4. Barnes P. W., Flint S. D. & Caldwell M. M. 1990. Morphological responses of crop and weed species of different growth forms to ultraviolet-B radiation. American Journal of Botany 77: 1354?1360.
5. Barnes P. W., Maggard S., Holman S. R. & Vergara B. S. 1993. Intraspecific variation in sensitivity to UV-B radiation in rice. Crop Science 33: 1041?1046.
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