PICOSECOND TIME-RESOLVED FLUORESCENCE STUDY OF CHLOROPHYLL ORGANIZATION AND EXCITATION-ENERGY DISTRIBUTION IN CHLOROPLASTS FROM WILD-TYPE BARLEY AND A MUTANT LACKING CHLOROPHYLL-B

被引:31
作者
SEARLE, GFW [1 ]
TREDWELL, CJ [1 ]
BARBER, J [1 ]
PORTER, G [1 ]
机构
[1] ROYAL INST,DAVY FARADAY LAB,LONDON W1X 4BS,ENGLAND
关键词
(Barley chloroplast); Chlorophyll organization; Excitation energy distribution; Fluorescence;
D O I
10.1016/0005-2728(79)90158-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Picosecond time-resolved fluorescence spectroscopy has been used to investigate the fluorescence emission from wild-type barley chloroplasts and from chloroplasts of the barley mutant, chlorina f-2, which lacks the light-harvesting chlorophyll a/b-protein complex. Cation-controlled regulation of the distribution of excitation energy was studied in isolated chloroplasts at the F0 and Fm levels. It was found that: 1. (a) The fluorescence decay curves were distinctly non-exponential, even at low excitation intensities (<2 × 1014 photons · cm-2). 2. (b) The fluorescence decay curves could, however, be described by a dual exponential decay law. The wild-type barley chloroplasts gave a short-lived fluorescence component of approximately 140 ps and a long-lived component of 600 ps (F0) or 1300 ps (Fm) in the presence of Mg2+; in comparison, the mutant barley yielded a short-lived fluorescence component of approx. 50 ps and a long-lived component of 194 ps (F0) and 424 ps (Fm). 3. (c) The absence of the light-harvesting chlorophyll a/b-protein complex in the mutant results in a low fluorescence quantum yield which is unaffected by the cation composition of the medium. 4. (d) The fluorescence yield changes seen in steady-state experiments on closing Photosystem II reaction centres (Fm/F0) or on the addition of MgCl2 (+Mg2+/-Mg2+) were in overall agreement with those calculated from the time-resolved fluorescence measurements. The results suggest that the short-lived fluorescence component is partly attributable to the chlorophyll a antenna of Photosystem I, and, in part, to those light-harvesting-Photosystem II pigment combinations which are strongly coupled to the Photosystem I antenna chlorophyll. The long-lived fluorescence component can be ascribed to the light-harvesting-Photosystem II pigment combinations not coupled with the antenna of Photosystem I. In the case of the mutant, the two components appear to be the separate emissions from the Photosystem I and Photosystem II antenna chlorophylls. © 1979.
引用
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页码:496 / 507
页数:12
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