Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo, Kita, Kyoto, 603-8555, Japan.
Research Center of Botany, Kyoto Sangyo University, Kamigamo, Kita , Kyoto, 603-8555, Japan.
Mol Genet Genomics. 2021 May;296(3):705-717. doi: 10.1007/s00438-021-01777-y. Epub 2021 Mar 26.
Cytoplasmic male sterility (CMS) observed in many plants leads defect in the production of functional pollen, while the expression of CMS is suppressed by a fertility restorer gene in the nuclear genome. Ogura CMS of radish is induced by a mitochondrial orf138, and a fertility restorer gene, Rfo, encodes a P-type PPR protein, ORF687, acting at the translational level. But, the exact function of ORF687 is still unclear. We found a Japanese variety showing male sterility even in the presence of Rfo. We examined the pollen fertility, Rfo expression, and orf138 mRNA in progenies of this variety. The progeny with Type H orf138 and Rfo showed male sterility when their orf138 mRNA was unprocessed within the coding region. By contrast, all progeny with Type A orf138 were fertile though orf138 mRNA remained unprocessed in the coding region, demonstrating that ORF687 functions on Type A but not on Type H. In silico analysis suggested a specific binding site of ORF687 in the coding region, not the 5' untranslated region estimated previously, of Type A. A single nucleotide substitution in the putative binding site diminishes affinity of ORF687 in Type H and is most likely the cause of the ineffectiveness of ORF687. Furthermore, fertility restoration by RNA processing at a novel site in some progeny plants indicated a new and the third fertility restorer gene, Rfs, for orf138. This study clarified that direct ORF687 binding to the coding region of orf138 is essential for fertility restoration by Rfo.
细胞质雄性不育(CMS)在许多植物中观察到,导致功能性花粉的产生缺陷,而核基因组中的育性恢复基因抑制 CMS 的表达。萝卜的 Ogura CMS 是由线粒体 orf138 诱导的,育性恢复基因 Rfo 编码一种 P 型 PPR 蛋白 ORF687,在翻译水平起作用。但是,ORF687 的确切功能仍不清楚。我们发现一个日本品种即使存在 Rfo 也表现出雄性不育。我们检查了这个品种后代的花粉育性、Rfo 表达和 orf138 mRNA。具有 H 型 orf138 和 Rfo 的后代,当它们的 orf138 mRNA 在编码区未加工时表现出雄性不育。相比之下,所有具有 A 型 orf138 的后代尽管 orf138 mRNA 在编码区保持未加工,但都是可育的,表明 ORF687 在 A 型上起作用而不在 H 型上起作用。计算机分析表明,A 型的一个特定结合位点位于编码区,而不是先前估计的 5'非翻译区。编码区假定结合位点的单个核苷酸取代降低了 H 型 ORF687 的亲和力,很可能是 ORF687 无效的原因。此外,一些后代植物中在新位点的 RNA 加工导致育性恢复表明了 orf138 的新的第三个育性恢复基因 Rfs。这项研究阐明了 Rfo 育性恢复所必需的 ORF687 与 orf138 编码区的直接结合。