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首页> 外文期刊>Photosynthesis Research: An International Journal >Fluorescence changes accompanying short-term light adaptations in photosystem I and photosystem II of the cyanobacterium Synechocystis sp. PCC 6803 and phycobiliprotein-impaired mutants: State 1/State 2 transitions and carotenoid-induced quenching of phycobilisomes.
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Fluorescence changes accompanying short-term light adaptations in photosystem I and photosystem II of the cyanobacterium Synechocystis sp. PCC 6803 and phycobiliprotein-impaired mutants: State 1/State 2 transitions and carotenoid-induced quenching of phycobilisomes.

机译:蓝藻蓝藻细菌光系统I和光系统II中伴随短期光适应的荧光变化。 PCC 6803和藻胆蛋白受损的突变体:状态1 /状态2转换和类胡萝卜素诱导的藻胆体猝灭。

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摘要

The features of the two types of short-term light-adaptations of photosynthetic apparatus, State 1/State 2 transitions, and non-photochemical fluorescence quenching of phycobilisomes (PBS) by orange carotene-protein (OCP) were compared in the cyanobacterium Synechocystis sp. PCC 6803 wild type, CK pigment mutant lacking phycocyanin, and PAL mutant totally devoid of phycobiliproteins. The permanent presence of PBS-specific peaks in the in situ action spectra of photosystem I (PSI) and photosystem II (PSII), as well as in the 77 K fluorescence excitation spectra for chlorophyll emission at 690 nm (PSII) and 725 nm (PSI) showed that PBS are constitutive antenna complexes of both photosystems. The mutant strains compensated the lack of phycobiliproteins by higher PSII content and by intensification of photosynthetic linear electron transfer. The detectable changes of energy migration from PBS to the PSI and PSII in the Synechocystis wild type and the CK mutant in State 1 and State 2 according to the fluorescence excitation spectra measurements were not registered. The constant level of fluorescence emission of PSI during State 1/State 2 transitions and simultaneous increase of chlorophyll fluorescence emission of PSII in State 1 in Synechocystis PAL mutant allowed to propose that spillover is an unlikely mechanism of state transitions. Blue-green light absorbed by OCP diminished the rout of energy from PBS to PSI while energy migration from PBS to PSII was less influenced. Therefore, the main role of OCP-induced quenching of PBS is the limitation of PSI activity and cyclic electron transport under relatively high light conditions.
机译:在蓝藻Synechocystis sp。中比较了两种类型的光合装置的短期光适应,状态1 /状态2转换和藻胆体(PBS)通过橙色胡萝卜素蛋白(OCP)的非光化学荧光猝灭的特征。 。 PCC 6803野生型,缺乏藻蓝蛋白的CK色素突变体和完全不含藻胆蛋白的PAL突变体。在光系统I(PSI)和光系统II(PSII)的原位作用光谱中以及在690 nm(PSII)和725 nm(叶绿素)发射的叶绿素的77 K荧光激发光谱中,永久存在PBS特异性峰PSI)表明PBS是两个光系统的本构天线复合体。突变菌株通过较高的PSII含量和增强的光合作用线性电子转移来弥补藻胆蛋白的缺乏。根据荧光激发光谱测量结果,未记录到集胞藻野生型和状态1和状态2中CK突变体从PBS到PSI和PSII的能量迁移的可检测变化。在状态1 /状态2转换期间,PSI的荧光发射水平恒定,而在拟南芥PAL突变体的状态1中,PSII的叶绿素荧光发射同时增加,这表明溢出是状态转换的一种不太可能的机制。 OCP吸收的蓝绿色光减少了能量从PBS到PSI的溃败,而能量从PBS到PSII的迁移受到的影响较小。因此,OCP诱导的PBS淬灭的主要作用是限制PSI活性和在相对较高光照条件下的循环电子传输。

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