Zahn Iris E, Roelofsen Chris, Angenent Gerco C, Bemer Marian
Laboratory of Molecular Biology, Wageningen University & Research, 6708 PB Wageningen, The Netherlands.
Business Unit Bioscience, Wageningen University & Research, 6708 PB Wageningen, The Netherlands.
Plants (Basel). 2023 Jul 25;12(15):2754. doi: 10.3390/plants12152754.
The moment at which a plant transitions to reproductive development is paramount to its life cycle and is strictly controlled by many genes. The transcription factor SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1) plays a central role in this process in . However, the role of SOC1 in tomato () has been sparsely studied. Here, we investigated the function of four tomato homologs in the floral transition and inflorescence development. We thoroughly characterized the -like clade throughout the Solanaceae and selected four tomato homologs that are dynamically expressed upon the floral transition. We show that of these homologs, TOMATO MADS 3 (TM3) and SISTER OF TM3 (STM3) promote the primary and sympodial transition to flowering, while MADS-BOX PROTEIN 23 (MBP23) and MBP18 hardly contribute to flowering initiation in the indeterminate cultivar Moneyberg. Protein-protein interaction assays and whole-transcriptome analysis during reproductive meristem development revealed that TM3 and STM3 interact and share many targets with FRUITFULL (FUL) homologs, including cytokinin regulators. Furthermore, we observed that mutating affects inflorescence development, but counteracts the inflorescence-branching phenotype of . Collectively, this indicates that TM3/STM3 promote the floral transition together with FUL2/MBP20, while these transcription factors have opposite functions in inflorescence development.
植物向生殖发育转变的时刻对其生命周期至关重要,并且受到许多基因的严格控制。转录因子CONSTANS 1过表达抑制因子(SOC1)在此过程中起着核心作用。然而,SOC1在番茄中的作用却鲜有研究。在这里,我们研究了四个番茄同源基因在花期转变和花序发育中的功能。我们全面表征了茄科植物中的类SOC1进化枝,并选择了四个在花期转变时动态表达的番茄同源基因。我们发现,在这些同源基因中,番茄MADS 3(TM3)和TM3的姐妹基因(STM3)促进向开花的初级和合轴转变,而MADS盒蛋白23(MBP23)和MBP18对无限生长品种Moneyberg的开花起始几乎没有贡献。在生殖分生组织发育过程中的蛋白质-蛋白质相互作用分析和全转录组分析表明,TM3和STM3相互作用,并与FUL同源基因共享许多靶点,包括细胞分裂素调节因子。此外,我们观察到突变会影响花序发育,但会抵消的花序分支表型。总的来说,这表明TM3/STM3与FUL2/MBP20一起促进花期转变,而这些转录因子在花序发育中具有相反的功能。