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Control of organelle gene expression by the mitochondrial transcription termination factor mTERF22 in Arabidopsis thaliana plants

机译:拟南芥植物中线粒体转录终止因子mTERF22控制细胞器基因表达

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摘要

Mitochondria are key sites for cellular energy metabolism and are essential to cell survival. As descendants of eubacterial symbionts (specifically α-proteobacteria), mitochondria contain their own genomes (mtDNAs), RNAs and ribosomes. Plants need to coordinate their energy demands during particular growth and developmental stages. The regulation of mtDNA expression is critical for controlling the oxidative phosphorylation capacity in response to physiological or environmental signals. The mitochondrial transcription termination factor (mTERF) family has recently emerged as a central player in mitochondrial gene expression in various eukaryotes. Interestingly, the number of mTERFs has been greatly expanded in the nuclear genomes of plants, with more than 30 members in different angiosperms. The majority of the annotated mTERFs in plants are predicted to be plastid- or mitochondria-localized. These are therefore expected to play important roles in organellar gene expression in angiosperms. Yet, functions have been assigned to only a small fraction of these factors in plants. Here, we report the characterization of mTERF22 (At5g64950) which functions in the regulation of mtDNA transcription in Arabidopsis thaliana. GFP localization assays indicate that mTERF22 resides within the mitochondria. Disruption of mTERF22 function results in reduced mtRNA accumulation and altered organelle biogenesis. Transcriptomic and run-on experiments suggest that the phenotypes of mterf22 mutants are attributable, at least in part, to altered mitochondria transcription, and indicate that mTERF22 affects the expression of numerous mitochondrial genes in Arabidopsis plants.
机译:线粒体是细胞能量代谢的关键部位,对细胞存活至关重要。线粒体作为真细菌共生体(特别是α变形杆菌)的后代,包含其自身的基因组(mtDNA),RNA和核糖体。植物需要在特定的生长和发育阶段协调其能源需求。 mtDNA表达的调节对于响应生理或环境信号控制氧化磷酸化能力至关重要。线粒体转录终止因子(mTERF)家族最近在各种真核生物中成为线粒体基因表达的核心参与者。有趣的是,mTERF的数量在植物的核基因组中得到了极大的扩展,不同被子植物中有30多个成员。预计植物中大多数带注释的mTERFs位于质体或线粒体中。因此,预期它们在被子植物的细胞器基因表达中起重要作用。然而,植物中仅将这些功能的一小部分分配给了功能。在这里,我们报道了在拟南芥中调节mtDNA转录功能的mTERF22(At5g64950)的表征。 GFP定位分析表明mTERF22位于线粒体内。 mTERF22功能的破坏导致mtRNA积累减少和细胞器生物发生改变。转录组学和连续实验表明,mterf22突变体的表型至少部分归因于线粒体转录的改变,并表明mTERF22影响拟南芥植物中许多线粒体基因的表达。

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