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Protochlorophyllide forms in non‐greening epicotyls of dark‐grown pea ( Pisum sativum )
Author(s) -
Böddi Béla,
McEwen Birgitta,
Ryberg Margareta,
Sundqvist Christer
Publication year - 1994
Publication title -
physiologia plantarum
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.351
H-Index - 146
eISSN - 1399-3054
pISSN - 0031-9317
DOI - 10.1111/j.1399-3054.1994.tb06667.x
Subject(s) - epicotyl , protochlorophyllide , pisum , sativum , biology , fluorescence , greening , etiolation , chemistry , botany , biochemistry , hypocotyl , oxidoreductase , enzyme , ecology , physics , quantum mechanics
Low‐temperature fluorescence emission spectra of 6.5‐day‐old dark‐grown epicotyls of pea ( Pisum sativum ) revealed the presence of protochlorophyll(ide). The upper part of the epicotyl contained 30% of the protochlorophyll(ide) content per fresh weight found in pea leaves, whereas the lower part contained 3%. Three discrete spectral forms of protochlorophyll(ide) were clearly distinguished after Gaussian deconvolution of fluorescence excitation and emission spectra. Adding the satellite bands of the Qy (0‐0) transitions (the emission vibrational (Emv) bands with correlated amplitudes, gave the following delineation: Ex439–Em629–Emv684, Ex447–Em636–Emv700 and Ex456–Em650–Emv728. Sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS‐PAGE) followed by immunodetection of whole tissue extracts of the epicotyl indicated the presence of NADPH‐protochlorophyllide oxidoreductase (EC 1.3.1.33). Electron micrographs showed prolamellar bodies in at most 11 % of the plastid profiles of the epicotyl cells. These prolamellar bodies were smaller, and many of them showed less regular structure than those of the leaves. Taken together, the results indicate that the protochlorophyll(ide) in epicotyls is arranged in a different way than in leaves.

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