Australian Research Council Centre of Excellence in Plant Energy Biology, School of Molecular Sciences, The University of Western Australia, Crawley, WA, 6009, Australia.
New Phytol. 2022 Oct;236(1):99-113. doi: 10.1111/nph.18318. Epub 2022 Jul 5.
The pentatricopeptide repeat protein GENOMES UNCOUPLED1 (GUN1) is required for chloroplast-to-nucleus signalling when plastid translation becomes inhibited during chloroplast development in Arabidopsis thaliana, but its exact molecular function remains unknown. We analysed GUN1 sequences in land plants and streptophyte algae. We tested functional conservation by complementation of the Arabidopsis gun1 mutant with GUN1 genes from the streptophyte alga Coleochate orbicularis or the liverwort Marchantia polymorpha. We also analysed the transcriptomes of M. polymorpha gun1 knockout mutant lines during chloroplast development. GUN1 evolved within the streptophyte algal ancestors of land plants and is highly conserved among land plants but missing from the Rafflesiaceae that lack chloroplast genomes. GUN1 genes from C. orbicularis and M. polymorpha suppress the cold-sensitive phenotype of the Arabidopsis gun1 mutant and restore typical retrograde responses to treatments with inhibitors of plastid translation, even though M. polymorpha responds very differently to such treatments. Our findings suggest that GUN1 is an ancient protein that evolved within the streptophyte algal ancestors of land plants before the first plants colonized land more than 470 million years ago. Its primary role is likely to be in chloroplast gene expression and its role in chloroplast retrograde signalling probably evolved more recently.
在拟南芥叶绿体发育过程中,当叶绿体翻译受到抑制时,五肽重复蛋白 GENOMES UNCOUPLED1(GUN1)是叶绿体到细胞核信号转导所必需的,但它的确切分子功能仍不清楚。我们分析了陆地植物和绿藻中的 GUN1 序列。我们通过用绿藻环沟藻或苔类植物地钱的 GUN1 基因来互补拟南芥 gun1 突变体来测试功能保守性。我们还分析了在叶绿体发育过程中地钱 gun1 敲除突变体系的转录组。GUN1 在陆地植物的绿藻祖先中进化而来,在陆地植物中高度保守,但在缺乏叶绿体基因组的大花草科中缺失。环沟藻和地钱的 GUN1 基因抑制了拟南芥 gun1 突变体的冷敏感表型,并恢复了对叶绿体翻译抑制剂处理的典型逆行反应,尽管地钱对这种处理的反应非常不同。我们的研究结果表明,GUN1 是一种古老的蛋白质,在 4.7 亿多年前第一批植物登陆之前,就在陆地植物的绿藻祖先中进化而来。它的主要作用可能是在叶绿体基因表达,其在叶绿体逆行信号转导中的作用可能是最近才进化而来的。