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Novel insights into plant light-harvesting complex II phosphorylation and 'state transitions'

机译:关于植物光捕获复合物II磷酸化和“状态转换”的新颖见解

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摘要

Plants need a highly responsive regulatory system to keep photosynthetic light reactions in balance with the needs and restrictions of the downstream metabolism. This mechanism optimises plant growth under naturally fluctuating light conditions. In this opinion article, we present a model addressing the biological role of the light intensity-controlled phosphorylation of light-harvesting complex II (LHCII) proteins and its relation with the non-photochemical quenching of excitation energy (NPQ). We overturn a long held view of the possible role of 'state transitions'. Instead, we discuss the interplay between LHCII protein phosphorylation and NPQ, a mechanism that is crucial for regulating excitation energy distribution to the two photosystems (PSII and PSI) and balancing the intersystem electron flow despite constant fluctuations in light intensity.
机译:植物需要一个高响应性的调节系统,以使光合作用的光反应与下游代谢的需求和限制保持平衡。这种机制可以在自然变化的光照条件下优化植物的生长。在这篇观点文章中,我们提出了一个模型,该模型解决了光捕获复合物II(LHCII)蛋白的光强度控制的磷酸化的生物学作用及其与激发能(NPQ)的非光化学猝灭的关系。我们推翻了人们长期以来对“国家过渡”的可能作用的看法。取而代之的是,我们讨论LHCII蛋白磷酸化与NPQ之间的相互作用,该机制对于调节激发能量向两个光系统(PSII和PSI)的分布和平衡系统间电子流至关重要,尽管光强度不断波动。

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