Ambrose Barbara A, Smalls Tynisha L, Zumajo-Cardona Cecilia
New York Botanical Garden, Bronx, Bronx, New York, USA.
The Graduate Center, City University of New York, New York, New York, USA.
Evol Dev. 2021 May;23(3):215-230. doi: 10.1111/ede.12375. Epub 2021 Mar 5.
The MADS-box genes constitute a large transcription factor family that appear to have evolved by duplication and diversification of function. Two types of MADS-box genes are distinguished throughout eukaryotes, types I and II. Type II classic MADS-box genes, also known as MIKC-type, are key developmental regulators in flowering plants and are particularly well-studied for their role in floral organ specification. However, very little is known about the role that these genes might play outside of the flowering plants. We investigated the evolution of type II classic MADS-box genes across land plants by performing a maximum likelihood analysis with a particular focus on lycophytes. Here, we present the expression patterns of all three type II classic MADS-box homologs throughout plant development in the lycophyte Selaginella moellendorffii: SmMADS1, SmMADS3, and SmMADS6. We used scanning electron microscopy and histological analyses to define stages of sporangia development in S. moellendorffii. We performed phylogenetic analyses of this gene lineage across land plants and found that lycophyte sequences appeared before the multiple duplication events that gave rise to the major MADS-box gene lineages in seed plants. Our expression analyses by in situ hybridization show that all type II classic MADS-box genes in S. moellendorffii have broad but distinct patterns of expression in vegetative and reproductive tissues, where SmMADS1 and SmMADS6 only differ during late sporangia development. The broad expression during S. moellendorffii development suggests that MADS-box genes have undergone neofunctionalization and subfunctionalization after duplication events in seed plants.
MADS盒基因构成了一个庞大的转录因子家族,其似乎是通过功能的复制和多样化进化而来的。在整个真核生物中可区分出两种类型的MADS盒基因,即I型和II型。II型经典MADS盒基因,也称为MIKC型,是开花植物中的关键发育调节因子,并且因其在花器官特化中的作用而得到了特别深入的研究。然而,对于这些基因在开花植物之外可能发挥的作用却知之甚少。我们通过进行最大似然分析,特别关注石松类植物,研究了陆地植物中II型经典MADS盒基因的进化。在此,我们展示了石松类植物卷柏中所有三个II型经典MADS盒同源基因在植物发育过程中的表达模式:卷柏MADS1(SmMADS1)、卷柏MADS3(SmMADS3)和卷柏MADS6(SmMADS6)。我们使用扫描电子显微镜和组织学分析来确定卷柏中孢子囊发育的阶段。我们对整个陆地植物的该基因谱系进行了系统发育分析,发现石松类植物的序列出现在导致种子植物中主要MADS盒基因谱系的多次复制事件之前。我们通过原位杂交进行的表达分析表明,卷柏中所有II型经典MADS盒基因在营养组织和生殖组织中都有广泛但不同的表达模式,其中SmMADS1和SmMADS6仅在孢子囊发育后期有所不同。卷柏发育过程中的广泛表达表明,MADS盒基因在种子植物的复制事件后经历了新功能化和亚功能化。