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[富含P700的叶绿体片段荧光过程变化的性质]

[Nature of changes in the fluorescence process of P700-enriched chloroplast fragments].

作者信息

Karapetian N V, Rakhimberdieva M G, Bukhov N G

出版信息

Biokhimiia. 1978 Jul;43(7):1319-27.

PMID:698313
Abstract

Spectral and photochemical properties of P700-enriched chloroplast fragments, obtained by ether treatment of liophylized digitonin fragments, were studied. It was shown that time course of fluorescence changes of isolated fragments (in contrast to digitonin fragments) at 20 degrees does not correspond to time course of absorption changes at 700 nm. Differences in low temperature fluorescence spectra of fragments, initially distinguished by redox states of photosystem 1 reaction centers were found. However, the fragments under study were incapable of light-induced changes of fluorescence yield at--196 degrees, independently of spectral region of measured fluorescence (lambda greater than 660 nm or lambda greater than 710 nm), though these fragments reveal phototransformation of P700. Thus changes in the low temperature fluorescence spectra cannot be accounted for by redox changes of P700. The fragments, isolated by ether treatment at 20 degrees as well at--196 degrees do not reveal light-induced fluorescence changes caused by redox changes of P700. The fluorescence changes observed may be due to accessory photoprocesses of chlorophyllprotein complex.

摘要

研究了通过对冻干洋地黄皂苷片段进行乙醚处理获得的富含P700的叶绿体片段的光谱和光化学性质。结果表明,分离片段在20℃时荧光变化的时间进程(与洋地黄皂苷片段相反)与700nm处吸收变化的时间进程不一致。发现片段的低温荧光光谱存在差异,最初以光系统1反应中心的氧化还原状态区分。然而,所研究的片段在-196℃时不能进行光诱导的荧光产率变化,与测量荧光的光谱区域无关(λ大于660nm或λ大于710nm),尽管这些片段显示出P700的光转化。因此,低温荧光光谱的变化不能用P700的氧化还原变化来解释。在20℃以及-196℃下通过乙醚处理分离的片段未显示出由P700的氧化还原变化引起的光诱导荧光变化。观察到的荧光变化可能是由于叶绿素蛋白复合物的辅助光过程。

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