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Antenna chlorophyll a complexes in mutant and developing barley
Authors:Jeanette S Brown  Jan M Anderson  L Horst Grimme
Institution:(1) Carnegie Institution of Washington, 94305 Stanford, CA, USA;(2) Present address: Division of Plant Industry, CSIRO, P.O. Box 1600, 2601 Canberra, A.C.T., Australia;(3) Present address: Fachbereich Biologie/Chemie der Universität, D-2800 Bremen 33, FRG
Abstract:The chlorophyll a antenna of photosystems I and II were each isolated after detergent treatment by gel electrophoresis or sucrose gradient centrifugation from a b-less mutant of barley grown in daylight and from wildtype barley developed in intermittent light. We identified each fraction by both its electrophoretic position and PS I activity (P700 content) in the case of the mutant, and by both PS I and PS II activity (DCIP reduction from DPC) in the light-limited plants. The proportion of Chl a in each photosystem was estimated from the amount in each gel or sucrose gradient band, and from addition of the areas under the absorption spectra (650–710 nm) of each fraction to match the spectrum of the solubilized thylakoids. The latter method was possible because the spectrum (77 K) of each fraction was unique; in the mutant about 70% of chlorophyll is associated with PS I and 30% with PS II. In the light-limited plants, the reverse is true with nearly 70% associated with PS II. RESOL analyses of both absorption and fluorescence emission spectra of all isolated fractions indicated an abnormal arrangement of antenna chlorophyll molecules in the light-limited, developing membranes even though their reaction centers are fully functional.Abbreviations DCIP dichlorophenolindophenol - DOC deoxycholate - DPC diphenylcarbazide - DL daylight - ImL intermittent light - LHC light-harvesting Chl a/b protein complex - PAGE polyacrylamide gel electrophoresis DPB-CIW No. 778
Keywords:absorption  ehlorophyll-proteins  fluorescence  photosynthesis  spectral curve analysis
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