Univ. Lille, CNRS, Centrale Lille, UMR 9189-CRIStAL-Centre de Recherche en Informatique Signal et Automatique de Lille, F-59000 Lille, France.
CREA Research Centre for Vegetable and Ornamental Crops, 84098 Pontecagnano Faiano, SA, Italy.
Int J Mol Sci. 2019 Sep 26;20(19):4788. doi: 10.3390/ijms20194788.
Mitochondrial genomes (mitogenomes) in higher plants can induce cytoplasmic male sterility and be somehow involved in nuclear-cytoplasmic interactions affecting plant growth and agronomic performance. They are larger and more complex than in other eukaryotes, due to their recombinogenic nature. For most plants, the mitochondrial DNA (mtDNA) can be represented as a single circular chromosome, the so-called master molecule, which includes repeated sequences that recombine frequently, generating sub-genomic molecules in various proportions. Based on the relevance of the potato crop worldwide, herewith we report the complete mtDNA sequence of two cultivars, namely Cicero and Désirée, and a comprehensive study of its expression, based on high-coverage RNA sequencing data. We found that the potato mitogenome has a multi-partite architecture, divided in at least three independent molecules that according to our data should behave as autonomous chromosomes. Inter-cultivar variability was null, while comparative analyses with other species of the Solanaceae family allowed the investigation of the evolutionary history of their mitogenomes. The RNA-seq data revealed peculiarities in transcriptional and post-transcriptional processing of mRNAs. These included co-transcription of genes with open reading frames that are probably expressed, methylation of an rRNA at a position that should impact translation efficiency and extensive RNA editing, with a high proportion of partial editing implying frequent mis-targeting by the editing machinery.
高等植物的线粒体基因组(mitogenomes)可以诱导细胞质雄性不育,并在一定程度上参与影响植物生长和农艺性能的核质相互作用。由于其重组性质,它们比其他真核生物更大、更复杂。对于大多数植物来说,线粒体 DNA(mtDNA)可以表示为一个单一的圆形染色体,即所谓的主分子,其中包含频繁重组的重复序列,以各种比例产生亚基因组分子。鉴于马铃薯作物在全球的重要性,我们在此报告了两个品种——Cicero 和 Désirée 的完整 mtDNA 序列,并基于高覆盖度的 RNA 测序数据对其表达进行了全面研究。我们发现,马铃薯线粒体基因组具有多分区结构,分为至少三个独立的分子,根据我们的数据,这些分子应该表现为自主染色体。品种间的变异性为零,而与茄科其他物种的比较分析则可以研究它们的线粒体基因组的进化历史。RNA-seq 数据揭示了 mRNA 转录和转录后加工的特殊性。这些包括具有开放阅读框的基因的共转录,该基因可能被表达,rRNA 在一个位置的甲基化,这可能会影响翻译效率,以及广泛的 RNA 编辑,其中高比例的部分编辑意味着编辑机制经常出现错误靶向。