生物
质体
叶绿体
类囊体
蓝藻
突变体
光系统I
光合作用
基因组
光系统II
基因
光系统
遗传学
植物
细菌
作者
Guo‐Zheng Dai,Weiyi Song,Haifeng Xu,Ming Tu,Yu Chen,Zhengke Li,Jin‐Long Shang,Chunlei Jin,Cliff Ding,Lingzi Zuo,Yan-Ru Liu,Weiwei Yan,Shasha Zang,Ke Liu,Zheng Zhang,Ralph Bock,Bao‐Sheng Qiu
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2023-12-26
卷期号:36 (5): 1844-1867
被引量:3
标识
DOI:10.1093/plcell/koad330
摘要
Abstract Hypothetical chloroplast open reading frames (ycfs) are putative genes in the plastid genomes of photosynthetic eukaryotes. Many ycfs are also conserved in the genomes of cyanobacteria, the presumptive ancestors of present-day chloroplasts. The functions of many ycfs are still unknown. Here, we generated knock-out mutants for ycf51 (sll1702) in the cyanobacterium Synechocystis sp. PCC 6803. The mutants showed reduced photoautotrophic growth due to impaired electron transport between photosystem II (PSII) and PSI. This phenotype results from greatly reduced PSI content in the ycf51 mutant. The ycf51 disruption had little effect on the transcription of genes encoding photosynthetic complex components and the stabilization of the PSI complex. In vitro and in vivo analyses demonstrated that Ycf51 cooperates with PSI assembly factor Ycf3 to mediate PSI assembly. Furthermore, Ycf51 interacts with the PSI subunit PsaC. Together with its specific localization in the thylakoid membrane and the stromal exposure of its hydrophilic region, our data suggest that Ycf51 is involved in PSI complex assembly. Ycf51 is conserved in all sequenced cyanobacteria, including the earliest branching cyanobacteria of the Gloeobacter genus, and is also present in the plastid genomes of glaucophytes. However, Ycf51 has been lost from other photosynthetic eukaryotic lineages. Thus, Ycf51 is a PSI assembly factor that has been functionally replaced during the evolution of oxygenic photosynthetic eukaryotes.
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