State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Jinming Avenue, Kaifeng 475004, China.
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian 271018, China.
Int J Mol Sci. 2022 Jan 8;23(2):687. doi: 10.3390/ijms23020687.
Light is essential for photosynthesis but light levels that exceed an organism's assimilation capacity can cause serious damage or even cell death. Plants and microalgae have developed photoprotective mechanisms collectively referred to as non-photochemical quenching to minimize such potential damage. One such mechanism is energy-dependent quenching (qE), which dissipates excess light energy as heat. Over the last 30 years, much has been learned about the molecular mechanism of qE in green algae and plants. However, the steps between light perception and qE represented a gap in our knowledge until the recent identification of light-signaling pathways that function in these processes in the green alga In this review, we summarize the high light and UV-mediated signaling pathways for qE in . We discuss key questions remaining about the pathway from light perception to photoprotective gene expression in . We detail possible differences between green algae and plants in light-signaling mechanisms for qE and emphasize the importance of research on light-signaling mechanisms for qE in plants.
光是光合作用所必需的,但超过生物体同化能力的光水平会导致严重的损伤甚至细胞死亡。植物和微藻已经发展出了光保护机制,统称为非光化学猝灭,以最大程度地减少这种潜在的损伤。其中一种机制是依赖能量的猝灭(qE),它将多余的光能以热量的形式耗散。在过去的 30 年里,人们对绿藻和植物中 qE 的分子机制有了很多了解。然而,在最近确定了在绿藻中起作用的光信号通路之前,光感知和 qE 之间的步骤一直是我们知识中的一个空白。在这篇综述中,我们总结了高等植物中 qE 的高光和 UV 介导的信号通路。我们讨论了关于高等植物中从光感知到光保护基因表达的途径的关键问题。我们详细说明了绿藻和植物之间 qE 光信号机制的可能差异,并强调了研究植物中 qE 光信号机制的重要性。