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一种非典型的短链脱氢酶-还原酶在拟南芥光保护 qH 的松弛中起作用。

An atypical short-chain dehydrogenase-reductase functions in the relaxation of photoprotective qH in Arabidopsis.

机构信息

Howard Hughes Medical Institute, University of California, Berkeley, CA, USA.

Department of Plant and Microbial Biology, University of California, Berkeley, CA, USA.

出版信息

Nat Plants. 2020 Feb;6(2):154-166. doi: 10.1038/s41477-020-0591-9. Epub 2020 Feb 13.

Abstract

Photosynthetic organisms experience wide fluctuations in light intensity and regulate light harvesting accordingly to prevent damage from excess energy. The antenna quenching component qH is a sustained form of energy dissipation that protects the photosynthetic apparatus under stress conditions. This photoprotective mechanism requires the plastid lipocalin LCNP and is prevented by SUPPRESSOR OF QUENCHING1 (SOQ1) under non-stress conditions. However, the molecular mechanism of qH relaxation has yet to be resolved. Here, we isolated and characterized RELAXATION OF QH1 (ROQH1), an atypical short-chain dehydrogenase-reductase that functions as a qH-relaxation factor in Arabidopsis. The ROQH1 gene belongs to the GreenCut2 inventory specific to photosynthetic organisms, and the ROQH1 protein localizes to the chloroplast stroma lamellae membrane. After a cold and high-light treatment, qH does not relax in roqh1 mutants and qH does not occur in leaves overexpressing ROQH1. When the soq1 and roqh1 mutations are combined, qH can neither be prevented nor relaxed and soq1 roqh1 displays constitutive qH and light-limited growth. We propose that LCNP and ROQH1 perform dosage-dependent, antagonistic functions to protect the photosynthetic apparatus and maintain light-harvesting efficiency in plants.

摘要

光合生物经历光照强度的广泛波动,并相应地调节光捕获以防止来自过量能量的损伤。天线猝灭组分 qH 是一种持续的能量耗散形式,可在胁迫条件下保护光合作用装置。这种光保护机制需要质体脂类蛋白 LCNP,并在非胁迫条件下被 SUPPRESSOR OF QUENCHING1(SOQ1)所阻止。然而,qH 弛豫的分子机制尚未解决。在这里,我们分离并鉴定了 RELAXATION OF QH1(ROQH1),这是一种非典型的短链脱氢酶-还原酶,在拟南芥中作为 qH 弛豫因子发挥作用。ROQH1 基因属于光合作用生物特有的 GreenCut2 清单,ROQH1 蛋白定位于叶绿体基质片层膜。在冷和高光处理后,roqh1 突变体中的 qH 不会弛豫,而在过量表达 ROQH1 的叶片中则不会发生 qH。当 soq1 和 roqh1 突变体结合时,qH 既不能被阻止也不能被弛豫,因此 soq1 roqh1 表现出组成型 qH 和光限制生长。我们提出 LCNP 和 ROQH1 执行剂量依赖性的拮抗功能,以保护光合作用装置并维持植物中的光捕获效率。

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