首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Premature arrest of the male flower meristem precedes sexual dimorphism in the dioecious plant Silene latifolia
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Premature arrest of the male flower meristem precedes sexual dimorphism in the dioecious plant Silene latifolia

机译:在雌雄异株植物Silene latifolia中雄性花分生组织的过早捕捕先于有性二态性。

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摘要

Most dioecious plant species are believed to derive from hermaphrodite ancestors. The regulatory pathways that have been modified during evolution of the hermaphrodite ancestors and led to the emergence of dioecious species still remain unknown. Silene latifolia is a dioecious plant species harboring XY sex chromosomes. To identify the molecular mechanisms involved in female organ suppression in male flowers of S. latifolia, we looked for genes potentially involved in the establishment of floral organ and whorl boundaries. We identified homologs of Arabidopsis thaliana SHOOTMERISTEMLESS (STM) and CUP SHAPED COTYLEDON (CUC) 1 and CUC2 genes in S. latifolia. Our phylogenetic analyses suggest that we identified true orthologs for both types of genes. Detailed expression analyses showed a conserved expression pattern for these genes between S. latifolia and A. thaliana, suggesting a conserved function of the corresponding proteins. Comparative in situ hybridization experiments between male, female, and hermaphrodite individuals reveal that these genes show a male-specific pattern of expression before any morphological difference become apparent. Our results make SlSTM and SlCUC strong candidates for being involved in sex determination in S. latifolia.
机译:据信大多数雌雄异体的植物物种都来自雌雄同体的祖先。在雌雄同体祖先的进化过程中已被修改并导致雌雄异体物种出现的调控途径仍然未知。阔叶银耳是具有XY性染色体的雌雄异株。为了确定在S. latifolia的雄花中抑制女性器官的分子机制,我们寻找了可能与建立花器官和螺纹边界相关的基因。我们在拟南芥中鉴定到拟南芥SHOOTMERISTEMLESS(STM)和杯状子叶(CUC)1和CUC2基因的同源物。我们的系统发育分析表明,我们确定了这两种基因的真正直系同源基因。详细的表达分析显示了在S. latifolia和拟南芥中这些基因的保守表达模式,表明相应蛋白质的保守功能。雄性,雌性和雌雄同体个体之间的比较性原位杂交实验表明,这些基因在任何形态学差异变得明显之前就显示出雄性特异性表达模式。我们的结果使SlSTM和SlCUC成为参与S. latifolia性别鉴定的有力候选者。

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