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Leaf and Plant Age Affects Photosynthetic Performance and Photoprotective Capacity

机译:叶片和植物的年龄影响光合性能和光保护能力

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摘要

In this work, we studied the changes in high-light tolerance and photosynthetic activity in leaves of the Arabidopsis (Arabidopsis thaliana) rosette throughout the vegetative stage of growth. We implemented an image-analysis work flow to analyze the capacity of both the whole plant and individual leaves to cope with excess excitation energy by following the changes in absorbed light energy partitioning. The data show that leaf and plant age are both important factors influencing the fate of excitation energy. During the dark-to-light transition, the age of the plant affects mostly steady-state levels of photochemical and nonphotochemical quenching, leading to an increased photosynthetic performance of its leaves. The age of the leaf affects the induction kinetics of nonphotochemical quenching. These observations were confirmed using model selection procedures. We further investigated how different leaves on a rosette acclimate to high light and show that younger leaves are less prone to photoinhibition than older leaves. Our results stress that both plant and leaf age should be taken into consideration during the quantification of photosynthetic and photoprotective traits to produce repeatable and reliable results.
机译:在这项工作中,我们研究了整个营养生长阶段拟南芥(Arabidopsis thaliana)莲座丛叶片中高耐光性和光合活性的变化。我们执行了图像分析工作流程,通过跟踪吸收的光能分配的变化来分析整个植物和单个叶子应对过量激发能的能力。数据表明,叶片和植物的年龄都是影响激发能命运的重要因素。在从暗到光的过渡过程中,植物的年龄主要影响光化学和非光化学猝灭的稳态水平,从而导致其叶片的光合性能增强。叶的年龄影响非光化学猝灭的诱导动力学。这些观察结果通过模型选择程序得到证实。我们进一步研究了莲座丛上的不同叶片如何适应强光,并显示年轻叶片比老叶片更不易光抑制。我们的结果强调,在定量光合和光保护性状时应同时考虑植物和叶龄,以产生可重复和可靠的结果。

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