Plastid biogenesis and the coordination of plastid and nuclear genome expression through anterograde and retrograde signaling are essential for plant development. GENOMES UNCOUPLED1 (GUN1) plays a central role in retrograde signaling during early plant development. The putative function of GUN1 has been extensively studied, but its molecular function remains controversial. Here, we evaluate published transcriptome data and generate our own data from gun1 mutants grown under signaling-relevant conditions to show that editing and splicing are not relevant for GUN1-dependent retrograde signaling. Our study of the plastid (post)transcriptome of gun1 seedlings with white and pale cotyledons demonstrates that GUN1 deficiency significantly alters the entire plastid transcriptome. By combining this result with a pentatricopeptide repeat code-based prediction and experimental validation by RNA immunoprecipitation experiments, we identified several putative targets of GUN1, including tRNAs and RNAs derived from ycf1.2, rpoC1, and rpoC2Â and the ndhH-ndhA-ndhI-ndhG-ndhE-psaC-ndhD gene cluster. The absence of plastid rRNAs and the significant reduction of almost all plastid transcripts in white gun1 mutants account for the cotyledon phenotype. Our study provides evidence for RNA binding and maturation as the long-sought molecular function of GUN1 and resolves long-standing controversies. We anticipate that our findings will serve as a basis for subsequent studies on mechanisms of plastid gene expression and will help to elucidate the function of GUN1 in retrograde signaling.
GENOMES UNCOUPLED PROTEIN1 binds to plastid RNAs and promotes their maturation.
GENOMES UNCOUPLED PROTEIN1 与质体 RNA 结合并促进其成熟
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作者:Tang Qian, Xu Duorong, Lenzen Benjamin, Brachmann Andreas, Yapa Madhura M, Doroodian Paymon, Schmitz-Linneweber Christian, Masuda Tatsuru, Hua Zhihua, Leister Dario, Kleine Tatjana
| 期刊: | Plant Communications | 影响因子: | 11.600 |
| 时间: | 2024 | 起止号: | 2024 Dec 9; 5(12):101069 |
| doi: | 10.1016/j.xplc.2024.101069 | 研究方向: | 其它 |
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