Steinbach Gábor, Schubert Félix, Kaňa Radek
Institute of Microbiology, CAS, Centrum Algatech, Třeboň, Czech Republic.
Department of Mineralogy, Geochemistry and Petrology, Faculty of Science and Informatics, University of Szeged, Szeged, Hungary.
J Photochem Photobiol B. 2015 Nov;152(Pt B):395-9. doi: 10.1016/j.jphotobiol.2015.10.003. Epub 2015 Oct 9.
Primary photosynthetic reactions take place inside thylakoid membrane where light-to-chemical energy conversion is catalyzed by two pigment-protein complexes, photosystem I (PSI) and photosystem II (PSII). Light absorption in cyanobacteria is increased by pigment-protein supercomplexes--phycobilisomes (PBSs) situated on thylakoid membrane surfaces that transfer excitation energy into both photosystems. We have explored the localization of PSI, PSII and PBSs in thylakoid membrane of native cyanobacteria cell Anabaena sp. 7120 by means of cryogenic confocal microscopy. We have adapted a conventional temperature controlling stage to an Olympus FV1000 confocal microscope. The presence of red shifted emission of chlorophylls from PSI has been confirmed by spectral measurements. Confocal fluorescence images of PSI (in a spectral range 710-750 nm), PSII (in a spectral range 690-705 nm) and PBSs (in a spectral range 650-680 nm) were recorded at low temperature. Co-localization of images showed spatial heterogeneity of PSI, PSII and PBSs over the thylakoid membrane, and three dominant areas were identified: PSI-PSII-PBS supercomplex area, PSII-PBS supercomplex area and PSI area. The observed results were discussed with regard to light-harvesting regulation in cyanobacteria.
初级光合反应发生在类囊体膜内,在那里光能到化学能的转换由两种色素蛋白复合物,即光系统I(PSI)和光系统II(PSII)催化。蓝藻中的光吸收通过位于类囊体膜表面的色素蛋白超复合物——藻胆体(PBS)增强,藻胆体将激发能传递到两个光系统中。我们通过低温共聚焦显微镜探索了天然蓝藻细胞鱼腥藻7120类囊体膜中PSI、PSII和PBS的定位。我们将一个传统的温度控制载物台适配到奥林巴斯FV1000共聚焦显微镜上。通过光谱测量证实了PSI中叶绿素红移发射的存在。在低温下记录了PSI(在710 - 750 nm光谱范围内)、PSII(在690 - 705 nm光谱范围内)和PBS(在650 - 680 nm光谱范围内)的共聚焦荧光图像。图像的共定位显示了PSI、PSII和PBS在类囊体膜上的空间异质性,并确定了三个主要区域:PSI - PSII - PBS超复合物区域、PSII - PBS超复合物区域和PSI区域。针对蓝藻中的光捕获调节对观察结果进行了讨论。