Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin (IJPB), 78000, Versailles, France.
Institute of Plant Biology and Biotechnology, University of Münster, Schlossplatz 8, D-48143 Münster, Germany.
J Exp Bot. 2024 Aug 28;75(16):4851-4872. doi: 10.1093/jxb/erae214.
Cytoplasmic male sterility (CMS) is of major agronomical relevance in hybrid breeding. In gametophytic CMS, abortion of pollen is determined by the grain genotype, while in sporophytic CMS, it is determined by the mother plant genotype. While several CMS mechanisms have been dissected at the molecular level, gametophytic CMS has not been straightforwardly accessible. We used the gametophytic Sha-CMS in Arabidopsis to characterize the cause and process of pollen abortion by implementing in vivo biosensing in single pollen and mitoTALEN mutagenesis. We obtained conclusive evidence that orf117Sha is the CMS-causing gene, despite distinct characteristics from other CMS genes. We measured the in vivo cytosolic ATP content in single pollen, followed pollen development, and analyzed pollen mitochondrial volume in two genotypes that differed only by the presence of the orf117Sha locus. Our results showed that the Sha-CMS is not triggered by ATP deficiency. Instead, we observed desynchronization of a pollen developmental program. Pollen death occurred independently in pollen grains at diverse stages and was preceded by mitochondrial swelling. We conclude that pollen death is grain-autonomous in Sha-CMS and propose that mitochondrial permeability transition, which was previously described as a hallmark of developmental and environmental-triggered cell death programs, precedes pollen death in Sha-CMS.
细胞质雄性不育(CMS)在杂种优势育种中具有重要的农艺学意义。在配子体 CMS 中,花粉败育由籽粒基因型决定,而在孢子体 CMS 中,由母本植株基因型决定。尽管已经在分子水平上解析了几种 CMS 机制,但配子体 CMS 并不直接适用。我们使用拟南芥中的配子体 Sha-CMS 来通过对单个花粉进行体内生物传感和 mitoTALEN 诱变来描述花粉败育的原因和过程。我们获得了确凿的证据,表明 orf117Sha 是 CMS 致病基因,尽管它与其他 CMS 基因具有不同的特征。我们测量了两个基因型中单个花粉的细胞内 ATP 含量,跟踪花粉发育,并分析了花粉线粒体体积,这两个基因型仅在存在 orf117Sha 基因座方面存在差异。我们的结果表明,Sha-CMS 不是由 ATP 缺乏引发的。相反,我们观察到花粉发育程序的不同步。花粉死亡独立发生在不同发育阶段的花粉粒中,之前伴随着线粒体肿胀。我们得出结论,在 Sha-CMS 中,花粉死亡是籽粒自主的,并提出线粒体通透性转换,先前被描述为发育和环境触发细胞死亡程序的标志,先于 Sha-CMS 中的花粉死亡。