Institute of Medical Plant Physiology and Ecology, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, China.
School of Life Sciences, Sun Yat-sen University, Guangzhou, China.
FEBS Lett. 2024 Aug;598(15):1888-1898. doi: 10.1002/1873-3468.14969. Epub 2024 Jul 8.
Cold stress has severe negative consequences for plant growth and crop yield. Here, we report that an Arabidopsis thaliana mutant that lacks the HPE1 gene, which encodes an RNA-binding protein, maintains higher photosynthetic activity under cold stress, together with higher accumulation of thylakoid proteins. We showed that HPE1 interacts with MORF2 and MORF9 and thereby mediates RNA editing in chloroplasts. Loss of HPE1 function increased the editing efficiency at four RNA editing sites, rpoC-488, ndhB-149, ndhB-746 and matK-706, under cold stress and altered the expression of nuclear photosynthesis-related genes and cold-responsive genes. We propose that HPE1-mediated RNA editing acts as a trigger for retrograde signaling that affects photosynthesis under cold stress.
冷胁迫对植物生长和作物产量有严重的负面影响。在这里,我们报告说,拟南芥突变体缺乏编码 RNA 结合蛋白的 HPE1 基因,在冷胁迫下保持更高的光合作用活性,同时类囊体蛋白积累更高。我们表明 HPE1 与 MORF2 和 MORF9 相互作用,从而介导叶绿体中的 RNA 编辑。在冷胁迫下,HPE1 功能丧失会增加四个 RNA 编辑位点 rpoC-488、ndhB-149、ndhB-746 和 matK-706 的编辑效率,并改变核光合作用相关基因和冷响应基因的表达。我们提出,HPE1 介导的 RNA 编辑作为逆行信号的触发因素,影响冷胁迫下的光合作用。