Tamburino Rachele, D'Agostino Nunzio, Aufiero Gaetano, Nicolia Alessandro, Facchiano Angelo, Giordano Deborah, Sannino Lorenza, Paparo Rosa, Arimura Shin-Ichi, Scotti Nunzia, Cardi Teodoro
CNR-IBBR, Institute of Biosciences and Bioresources, Portici, Italy.
Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy.
Plant Biotechnol J. 2025 May;23(5):1862-1875. doi: 10.1111/pbi.70012. Epub 2025 Mar 22.
Genic-cytoplasmic male sterility (CMS) due to interactions between nuclear and cytoplasmic genomes is a well-known phenomenon in some Solanum spp. hybrids, but genes involved are not known. In this study, the chondriomes of two isonuclear male-fertile and sterile somatic hybrids (SH9A and SH9B, respectively) between the common potato (S. tuberosum Group Tuberosum, tbr) and the wild species S. commersonii were sequenced and compared to those of parental species to identify mitochondrial genes involved in the expression of male sterility. A putative novel gene (orf125) was found only in tbr and in male-sterile hybrids. Physical or functional deletion of orf125 by mtDNA editing in SH9B and its allotopic expression in SH9A clearly demonstrated that orf125 affects male fertility. Besides knockout mutants induced by mitoTALEN and DddA-derived cytosine base editing, specific orf125 missense mutations generated by the latter approach also induced reversion to male fertility in edited SH9B plants, prompting further studies on ORF125 structure-function relationship. The organization of the mitochondrial genome region implicated in CMS was found to be conserved across all common potato accessions, while an identical copy of tbr orf125 was detected in accessions belonging to the S. berthaultii species complex (ber). Such findings corroborate the hypothesis that ber accessions with T/β cytoplasm outcrossed as female with Andean potato, giving rise to the differentiation of the Chilean potato, and highlight the origin of mitochondrial factors contributing to genic-cytoplasmic male sterility in some tuber-bearing Solanum hybrids. Our results contribute to the development of innovative breeding approaches in potato.
核质互作导致的质核雄性不育(CMS)在一些茄属植物杂种中是一种众所周知的现象,但相关基因尚不清楚。在本研究中,对普通马铃薯(S. tuberosum Group Tuberosum,tbr)与野生种S. commersonii之间的两个同核雄性可育和不育体细胞杂种(分别为SH9A和SH9B)的线粒体基因组进行了测序,并与亲本物种的线粒体基因组进行比较,以鉴定参与雄性不育表达的线粒体基因。仅在tbr和雄性不育杂种中发现了一个推定的新基因(orf125)。通过对SH9B中的mtDNA进行编辑使orf125发生物理或功能缺失,并在SH9A中进行异位表达,清楚地表明orf125影响雄性育性。除了由线粒体靶向核酸酶(mitoTALEN)和DddA衍生的胞嘧啶碱基编辑诱导的敲除突变体外,后一种方法产生的特定orf125错义突变也导致编辑后的SH9B植株恢复雄性育性,这促使人们对ORF125的结构-功能关系进行进一步研究。发现与CMS相关的线粒体基因组区域的组织在所有普通马铃薯种质中都是保守的,而在属于S. berthaultii物种复合体(ber)的种质中检测到了tbr orf125的相同拷贝。这些发现证实了以下假设:具有T/β细胞质的ber种质作为母本与安第斯马铃薯杂交,导致了智利马铃薯的分化,并突出了线粒体因子在一些块茎类茄属杂种中质核雄性不育形成中的起源。我们的结果有助于马铃薯创新育种方法的发展。