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首页> 外文期刊>The Plant Cell >HYPERSENSITIVE TO HIGH LIGHT1 interacts with LOW QUANTUM YIELD OF PHOTOSYSTEM II1 and functions in protection of photosystem II from photodamage in arabidopsis.
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HYPERSENSITIVE TO HIGH LIGHT1 interacts with LOW QUANTUM YIELD OF PHOTOSYSTEM II1 and functions in protection of photosystem II from photodamage in arabidopsis.

机译:对高光过敏1与光系统II1的低量子产率相互作用,并起到保护光系统II免受拟南芥光损伤的作用。

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摘要

Under high-irradiance conditions, plants must efficiently protect photosystem II (PSII) from damage. In this study, we demonstrate that the chloroplast protein HYPERSENSITIVE TO HIGH LIGHT1 (HHL1) is expressed in response to high light and functions in protecting PSII against photodamage. Arabidopsis thaliana hhl1 mutants show hypersensitivity to high light, drastically decreased PSII photosynthetic activity, higher nonphotochemical quenching activity, a faster xanthophyll cycle, and increased accumulation of reactive oxygen species following high-light exposure. Moreover, HHL1 deficiency accelerated the degradation of PSII core subunits under high light, decreasing the accumulation of PSII core subunits and PSII-light-harvesting complex II supercomplex. HHL1 primarily localizes in the stroma-exposed thylakoid membranes and associates with the PSII core monomer complex through direct interaction with PSII core proteins CP43 and CP47. Interestingly, HHL1 also directly interacts, in vivo and in vitro, with LOW QUANTUM YIELD OF PHOTOSYSTEM II1 (LQY1), which functions in the repair and reassembly of PSII. Furthermore, the hhl1 lqy1 double mutants show increased photosensitivity compared with single mutants. Taken together, these results suggest that HHL1 forms a complex with LQY1 and participates in photodamage repair of PSII under high light.
机译:在高辐射条件下,植物必须有效保护光系统II(PSII)免受损坏。在这项研究中,我们证明了叶绿体蛋白对高光1(HHL1)过敏,是响应高光而表达的,其功能是保护PSII免受光损伤。拟南芥hhl1突变体显示出对高光的超敏性,PSII光合活性急剧降低,非光化学猝灭活性更高,叶黄素循环更快,高光暴露后活性氧的积累增加。此外,HHL1缺乏促进了强光下PSII核心亚基的降解,减少了PSII核心亚基和PSII-光捕获复合物II超复合物的积累。 HHL1主要位于暴露于基质的类囊体膜中,并通过与PSII核心蛋白CP43和CP47直接相互作用而与PSII核心单体复合物缔合。有趣的是,HHL1还可以在体内和体外直接与PHOTOSYSTEM II1的低量子产率(LQY1)相互作用,后者在PSII的修复和重组中起作用。此外,与单个突变体相比,hhl1 lqy1双重突变体显示出更高的光敏性。两者合计,这些结果表明HHL1与LQY1形成复合物,并在强光下参与PSII的光损伤修复。

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