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叶绿体和亚叶绿体制剂在低温下的荧光发射光谱。

Fluorescence emission spectra of chloroplasts and subchloroplast preparations at low temperature.

作者信息

Rijgersberg C P, Amesz J, Thielen A P, Swager J A

出版信息

Biochim Biophys Acta. 1979 Mar 15;545(3):473-82. doi: 10.1016/0005-2728(79)90156-7.

DOI:10.1016/0005-2728(79)90156-7
PMID:427140
Abstract

A study was made of the chlorophyll fluorescence spectra between 100 and 4.2 K of chloroplasts of various species of higher plants (wild strains and chlorophyll b mutants) and of subchloroplast particles enriched in Photosystem I or II. The chloroplast spectra showed the well known emission bands at about 685, 695 and 715--740 nm; the System I and II particles showed bands at about 675, 695 and 720 nm and near 685 nm, respectively. The effect of temperature lowering was similar for chloroplasts and subchloroplast particles; for the long wave bands an increase in intensity occurred mainly between 100 and 50 K, whereas the bands near 685 nm showed a considerable increase in the region of 50--4.2 K. In addition to this we observed an emission band near 680 nm in chloroplasts, the amplitude of which was less dependent on temperature. The band was missing in barley mutant no. 2, which lacks the light-harvesting chlorophyll a/b-protein complex. At 4.7 K the spectra of the variable fluorescence (Fv) consisted mainly of the emission bands near 685 and 695 nm, and showed only little far-red emission and no contribution of the band at 680 nm. From these and other data it is concluded that the emission at 680 nm is due to the light-harvesting complex, and that the bands at 685 and 695 nm are emitted by the System II pigment-protein complex. At 4.2 K, energy transfer from System II to the light-harvesting complex is blocked, but not from the light-harvesting to the System I and System II complexes. The fluorescence yield of the chlorophyll species emitting at 685 nm appears to be directly modulated by the trapping state of the reaction center.

摘要

对多种高等植物(野生型和叶绿素b突变体)叶绿体以及富含光系统I或光系统II的亚叶绿体颗粒在100 K至4.2 K温度范围内的叶绿素荧光光谱进行了研究。叶绿体光谱在约685、695和715 - 740 nm处显示出众所周知的发射带;光系统I和光系统II颗粒分别在约675、695和720 nm以及近685 nm处显示出发射带。叶绿体和亚叶绿体颗粒降低温度的效果相似;对于长波带,强度增加主要发生在100 K至50 K之间,而近685 nm的波段在50 - 4.2 K区域有显著增加。除此之外,我们在叶绿体中观察到一个近680 nm的发射带,其幅度对温度的依赖性较小。大麦突变体2号中没有这个带,该突变体缺乏捕光叶绿素a/b - 蛋白复合体。在4.7 K时,可变荧光(Fv)光谱主要由近685和695 nm的发射带组成,仅显示很少的远红发射,且没有680 nm波段的贡献。从这些以及其他数据可以得出结论,680 nm处的发射归因于捕光复合体(light - harvesting complex),而685和695 nm处的波段是由光系统II色素 - 蛋白复合体发射的。在4.2 K时,从光系统II到捕光复合体的能量转移被阻断,但从捕光复合体到光系统I和光系统II复合体的能量转移未被阻断。在685 nm处发射的叶绿素种类的荧光产率似乎直接受反应中心捕获状态的调节。

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