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首页> 外文期刊>BMC Evolutionary Biology >Synchronization of cytoplasmic and transferred mitochondrial ribosomal protein gene expression in land plants is linked to Telo -box motif enrichment
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Synchronization of cytoplasmic and transferred mitochondrial ribosomal protein gene expression in land plants is linked to Telo -box motif enrichment

机译:陆地植物细胞质和线粒体核糖体蛋白基因表达的同步与端粒盒基序富集有关

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Chloroplasts and mitochondria evolved from the endosymbionts of once free-living eubacteria, and they transferred most of their genes to the host nuclear genome during evolution. The mechanisms used by plants to coordinate the expression of such transferred genes, as well as other genes in the host nuclear genome, are still poorly understood. In this paper, we use nuclear-encoded chloroplast (cpRPGs), as well as mitochondrial (mtRPGs) and cytoplasmic (euRPGs) ribosomal protein genes to study the coordination of gene expression between organelles and the host. Results show that the mtRPGs, but not the cpRPGs, exhibit strongly synchronized expression with euRPGs in all investigated land plants and that this phenomenon is linked to the presence of a telo-box DNA motif in the promoter regions of mtRPGs and euRPGs. This motif is also enriched in the promoter regions of genes involved in DNA replication. Sequence analysis further indicates that mtRPGs, in contrast to cpRPGs, acquired telo-box from the host nuclear genome. Based on our results, we propose a model of plant nuclear genome evolution where coordination of activities in mitochondria and chloroplast and other cellular functions, including cell cycle, might have served as a strong selection pressure for the differential acquisition of telo-box between mtRPGs and cpRPGs. This research also highlights the significance of physiological needs in shaping transcriptional regulatory evolution.
机译:叶绿体和线粒体从曾经自由生活的真细菌的内共生体进化而来,它们在进化过程中将大部分基因转移到宿主核基因组中。植物用于协调此类转移基因以及宿主核基因组中其他基因表达的机制仍知之甚少。在本文中,我们使用核编码的叶绿体(cpRPGs)以及线粒体(mtRPGs)和细胞质(euRPGs)核糖体蛋白基因来研究细胞器与宿主之间基因表达的协调性。结果表明,在所有研究的陆地植物中,mtRPG(而不是cpRPG)都与euRPG表现出高度同步的表达,并且该现象与mtRPG和euRPGs的启动子区域中存在端粒盒DNA图案有关。该基序也富集于涉及DNA复制的基因的启动子区域。序列分析进一步表明,与cpRPGs相比,mtRPGs从宿主核基因组获得了telo-box。根据我们的研究结果,我们提出了一种植物核基因组进化模型,其中线粒体和叶绿体中的活性以及其他细胞功能(包括细胞周期)的协调可能为mtRPGs和mtRPGs之间的端粒盒的差异获取提供了强大的选择压力。 cpRPG。这项研究还强调了生理需求对塑造转录调控进化的重要性。

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