PLANT PHYSIOLOGY · 1971 · 18 citations · 15 references
Plant PhysiologyBotanyPhenylalanine Ammonia-lyaseLight PeriodPhotobiologyPhytochrome SpectrophotometryBiosynthesisRed Light ProgramFar Red EffectsPhotosynthesisHealth SciencesBiochemistryPhotochemistryRaphanus SativusPhytochemistryPlant MetabolismBiologyNatural SciencesPhytochromeMetabolismPhotoprotectionPlant Biochemistry
In seedlings of Raphanus sativus (radish) and Sinapis alba (mustard), irradiation for 6 hours with far red light significantly increases the extractable activity of phenylalanine ammonia-lyase by the end of the light period. A schedule of 10 minutes red light-110 minutes darkness-10 minutes red-110 minutes darkness-10 minutes red-110 minutes darkness has no effect as compared to dark controls. However, the red light program maintains a level of far red-absorbing phytochrome always measurable by in vivo spectrophotometry during the 6-hour experimental period. We conclude that the far red effect on this enzyme and for this specific material cannot be explained solely by formation and maintenance of far red-absorbing phytochrome.
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Nonphotochemical Transformations of Phytochrome in Vivo
W.L. Butler, H. C. Lane, H. W. Siegelman · PLANT PHYSIOLOGY · 1963 · 189 citations · Full text
Phytochrome and Photomorphogenesis in Plants
Harry Smith · Nature · 1970 · 127 citations
Biology, Photochemistry, Botany +7
Dark Transformations of Phytochrome in vivo. II
W.L. Butler, H. C. Lane · PLANT PHYSIOLOGY · 1965 · 119 citations · Full text
Photoinduction of phenylalanine deaminase in gherkin seedlings
G. Engelsma · Planta · 1967 · 86 citations