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首页> 外文期刊>Plant and cell physiology >Roles of the Cyclic Electron Flow Around PSI (CEF-PSI) and O-2-Dependent Alternative Pathways in Regulation of the Photosynthetic Electron Flow in Short-Term Fluctuating Light in Arabidopsis thaliana
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Roles of the Cyclic Electron Flow Around PSI (CEF-PSI) and O-2-Dependent Alternative Pathways in Regulation of the Photosynthetic Electron Flow in Short-Term Fluctuating Light in Arabidopsis thaliana

机译:拟南芥短期波动光中围绕PSI(CEF-PSI)和O-2-依赖的替代途径的循环电子流在光合电子流调节中的作用

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To assess the roles of the cyclic electron flow around PSI (CEF-PSI) and O-2-dependent alternative pathways including the water-water cycle in fluctuating light, we grew the wild type and pgr5 mutant of Arabidopsis thaliana in constant light, and measured Chl fluorescence and P700 parameters in their leaves in the fluctuating light alternating between 240 (HL) and 30 A mu mol photons m(-2) s(-2) (LL) every 2 min. At 20% O-2, the photochemical quantum yield of PSII decreased, in particular in the pgr5 plants, soon after the start of the fluctuating light treatment. PSI of the pgr5 plants was markedly photoinhibited by this treatment for 42 min. Slight PSI photoinhibition was also observed in the wild type. We measured energy sharing between PSII and PSI and estimated the PSI and PSII electron transport rates (ETRs). pgr5 showed larger energy allocation to PSI. In contrast to the wild type, the ratio of the PSI to the PSII ETR in pgr5 was higher in LL but lower in HL at 20% O-2 due to PSI acceptor-side limitation. At 2.7% or 0% O-2, the CEF-PSI of the pgr5 plants was enhanced, the acceptor-side limitation of PSI electron flow was released and PSI photoinhibition was not observed. The results suggest that the light fluctuation is a potent stress to PSI and that the CEF-PSI is essential to protect PSI from this stress.
机译:为了评估PSI(CEF-PSI)和O-2依赖性替代途径(包括水-水循环)在波动的光照下循环电子流的作用,我们在恒定光照下培育了拟南芥的野生型和pgr5突变体,并且每2分钟在240(HL)和30 Aμmol光子m(-2)s(-2)(LL)之间交替变化的波动光中,测量叶片中Chl荧光和P700参数。在起伏的光处理开始后不久,O-2浓度为20%时,PSII的光化学量子产率下降,尤其是在pgr5植物中。通过该处理42分钟,pgr5植物的PSI被显着光抑制。在野生型中也观察到了轻微的PSI光抑制。我们测量了PSII和PSI之间的能量共享,并估计了PSI和PSII电子传输速率(ETR)。 pgr5显示出更大的PSI能量分配。与野生型相反,由于PSI受体侧的限制,pgr5中PSI与PSII ETR的比率在LL较高但在HL较低(在O-2为20%时)较低。在2.7%或0%O-2下,pgr5植物的CEF-PSI增强,PSI电子流的受体侧限制被释放,未观察到PSI光抑制。结果表明,光波动是对PSI的强大压力,而CEF-PSI对于保护PSI免受这种压力至关重要。

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