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Dissecting Long-Term Adjustments of Photoprotective and Photo-Oxidative Stress Acclimation Occurring in Dynamic Light Environments

机译:剖析在动态光照环境中对光保护和光氧化应力适应的长期调整

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摘要

Changes in light intensity directly affect the performance of the photosynthetic apparatus. Light energy absorbed in excess of cells’ needs leads to production of reactive oxygen species and photo-oxidative damage. Excess light in both constant and dynamic environments induces photoprotective acclimation in plants. Distinct sets of signals and regulatory mechanisms are involved in acclimatory adjustment of photoprotection and photosynthesis under constant and dynamic (fluctuating) light conditions. We are still far away from drawing a comprehensive picture of acclimatory signal transduction pathways, particularly in dynamic environments. In this perspective article, we propose the use of Arabidopsis plants that produce H2O2 in chloroplasts (GO plants) under atmospheric CO2 levels as a tool to study the mechanisms of long-term acclimation to photo-oxidative stress. In our opinion there are new avenues to future investigations on acclimatory adjustments and signal transduction occurring in plants under dynamic light environments.
机译:光强度的变化直接影响光合装置的性能。吸收超过细胞需求的光能会导致产生活性氧和光氧化损伤。恒定和动态环境中的过量光会诱导植物产生光保护适应性。在恒定和动态(波动)的光照条件下,光信号保护和光合作用的适应性调节涉及不同的信号和调节机制。我们仍未全面了解适应性信号转导途径,尤其是在动态环境中。在此透视文章中,我们建议使用在大气CO2水平下在叶绿体中产生H2O2的拟南芥植物(GO植物)作为研究长期适应光氧化胁迫机制的工具。我们认为,对于动态光照环境下植物中发生的适应性调节和信号转导,有新的研究途径。

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