Suárez-Baron Harold, Pérez-Mesa Pablo, Ambrose Barbara A, González Favio, Pabón-Mora Natalia
Instituto de Biología, Universidad de Antioquia, Medellín, Colombia.
The New York Botanical Garden, Bronx, NY, USA.
J Exp Zool B Mol Dev Evol. 2017 Jan;328(1-2):55-71. doi: 10.1002/jez.b.22686. Epub 2016 Aug 10.
Aristolochia fimbriata (Aristolochiaceae) is a member of an early diverging lineage of flowering plants and a promising candidate for evo-devo studies. Aristolochia flowers exhibit a unique floral synorganization that consists of a monosymmetric and petaloid calyx formed by three congenitally fused sepals, and a gynostemium formed by the congenital fusion between stamens and the stigmatic region of the carpels. This floral ground plan atypical in the magnoliids can be used to evaluate the role of floral organ identity MADS-box genes during early flower evolution. In this study, we present in situ hybridization experiments for the homologs of the canonical C-, D-, and E-class genes. Spatiotemporal expression of the C-class gene AfimAG is restricted to stamens, ovary, and ovules, suggesting a conserved stamen and carpel identity function, consistent with that reported in core-eudicots and monocots. The D-class gene AfimSTK is detected in the anthers, the stigmas, the ovary, the ovules, the fruit, and the seeds, suggesting conserved roles in ovule and seed identity and unique roles in stamens, ovary, and fruit development. In addition, AfimSTK expression patterns in areas of organ abscission and dehiscence zones suggest putative roles linked to senescence processes. We found that both E-class genes are expressed in the anthers and the ovary; however, AfimSEP2 exhibits higher expression compared to AfimSEP1. These findings provide a comprehensive picture of the ancestral expression patterns of the canonical MADS-box floral organ identity genes and the foundations for further comparative analyses in other magnoliids.
毛叶马兜铃(马兜铃科)是开花植物早期分化谱系的成员,也是进化发育生物学研究的一个有潜力的候选对象。马兜铃属植物的花呈现出独特的花部协同组织,由三个先天融合的萼片形成的单对称花瓣状花萼以及雄蕊与心皮柱头区域先天融合形成的合蕊柱组成。这种在木兰类植物中不典型的花基本结构可用于评估花器官特征MADS盒基因在早期花进化过程中的作用。在本研究中,我们对经典C类、D类和E类基因的同源基因进行了原位杂交实验。C类基因AfimAG的时空表达局限于雄蕊、子房和胚珠,表明其具有保守的雄蕊和心皮特征功能,这与核心真双子叶植物和单子叶植物中报道的情况一致。D类基因AfimSTK在花药、柱头、子房、胚珠、果实和种子中均有检测到,表明其在胚珠和种子特征方面具有保守作用,在雄蕊、子房和果实发育中具有独特作用。此外,AfimSTK在器官脱落区域和开裂区的表达模式表明其可能与衰老过程有关。我们发现两个E类基因均在花药和子房中表达;然而,与AfimSEP1相比,AfimSEP2的表达水平更高。这些发现全面呈现了经典MADS盒花器官特征基因的祖先表达模式,并为在其他木兰类植物中进行进一步的比较分析奠定了基础。