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PROTON GRADIENT REGULATION5 Is Essential for Proper Acclimation of Arabidopsis Photosystem I to Naturally and Artificially Fluctuating Light Conditions

机译:质子梯度调节5对于拟南芥光系统I正确适应自然和人为波动的光照条件至关重要

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摘要

In nature, plants are challenged by constantly changing light conditions. To reveal the molecular mechanisms behind acclimation to sometimes drastic and frequent changes in light intensity, we grew Arabidopsis thaliana under fluctuating light conditions, in which the low light periods were repeatedly interrupted with high light peaks. Such conditions had only marginal effect on photosystem II but induced damage to photosystem I (), the damage being most severe during the early developmental stages. We showed that PROTON GRADIENT REGULATION5 (PGR5)–dependent regulation of electron transfer and proton motive force is crucial for protection of against photodamage, which occurred particularly during the high light phases of fluctuating light cycles. Contrary to PGR5, the NAD(P)H dehydrogenase complex, which mediates cyclic electron flow around , did not contribute to acclimation of the photosynthetic apparatus, particularly , to rapidly changing light intensities. Likewise, the Arabidopsis pgr5 mutant exhibited a significantly higher mortality rate compared with the wild type under outdoor field conditions. This shows not only that regulation of under natural growth conditions is crucial but also the importance of PGR5 in protection.
机译:在自然界中,不断变化的光照条件使植物面临挑战。为了揭示适应光强急剧变化和频繁变化的分子机制,我们在变化的光照条件下生长了拟南芥,其中低光照期反复被高光照峰打断。这些条件对光系统II仅有微不足道的影响,但对光系统I造成了损害(),该损害在发育初期最为严重。我们表明,依赖质子梯度调节5(PGR5)的电子传递和质子动力调节对于保护免受光损伤至关重要,这种损伤尤其发生在光周期波动的强光阶段。与PGR5相反,NAD(P)H脱氢酶复合物介导周围的循环电子流动,对光合作用设备的适应性没有贡献,特别是对快速变化的光强度没有帮助。同样,拟南芥pgr5突变体在室外野外条件下与野生型相比,表现出明显更高的死亡率。这不仅表明自然生长条件下的调节至关重要,而且PGR5在保护中也很重要。

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