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Duplication and Diversification of REPLUMLESS – A Case Study in the Papaveraceae

机译:菜谱的复制和多样化-以罂粟科为例

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摘要

There is a vast amount of fruit morphological diversity in terms of their texture, the number of carpels, if those carpels are fused or not and how fruits open to disperse the seeds. Arabidopsis thaliana, a model eudicot, has a dry bicarpellate silique, when the fruit matures, the two valves fall apart through the dehiscence zone leaving the seeds attached to the remaining medial tissue, called the replum. Proper replum development in A. thaliana is mediated by REPLUMLESS (RPL), a TALE Homeodomain protein. RPL represses the valve margin genetic program and the downstream dehiscence zone formation in the medial tissue of the siliques and RPL orthologs have conserved roles across the Brassicaceae eudicots. A RPL homolog, qSH1, has been studied in rice, a monocot, and plays a role in fruit shedding making it difficult to predict functional evolution of this gene lineage across angiosperms. Although RPL orthologs have been identified across all angiosperms, expression and functional analyses are scarce. In order to fill the phylogenetic gap between the Brassicaceae and monocots we have characterized the expression patterns of RPL homologs in two poppies with different fruit types, Bocconia frutescens with operculate valvate dehiscence and a persistent medial tissue, similar to a replum, and Papaver somniferum, a poppy with persistent medial tissue in between the multicarpellate gynoecia. We found that RPL homologs in Papaveraceae have broad expression patterns during plant development; in the shoot apical meristem, during flowering transition and in many floral organs, especially the carpels. These patterns are similar to those of RPL in A. thaliana. However, our results suggest that RPL does not have conserved roles in the maintenance of medial persistent tissues of fruits but may be involved with establishing the putative dehiscence zone in dry poppy fruits.
机译:就其质地,心皮数量,是否融合这些心皮以及水果如何打开以分散种子而言,存在大量的水果形态多样性。拟南芥拟南芥,有一个干燥的双羧酸硅果角果,当果实成熟时,两个瓣膜通过开裂区分开,使种子附着在剩下的内侧组织上,称为重瓣。拟南芥中正确的铁皮发育是由TALE Homeodomain蛋白REPLUMLESS(RPL)介导的。 RPL抑制了瓣叶缘的遗传程序,并且在角果和内侧同源物的中间组织中下游裂隙区的形成在整个十字花科双子叶植物中都起到了保守的作用。 RPL同源基因qSH1已在水稻(单子叶植物)中进行研究,并在果实脱落中起作用,这使得很难预测跨被子植物的该基因谱系的功能进化。尽管已在所有被子植物中鉴定出RPL直系同源物,但缺乏表达和功能分析。为了填补十字花科和单子叶植物之间的系统发育差距,我们表征了RPL同源物在两种水果类型不同的罂粟(具有可操作的瓣裂开裂的长春花和持久的内侧组织,类似于)和罂粟,罂粟,罂粟在多螺状妇科之间存在持续的内侧组织。我们发现罂粟科的RPL同源物在植物发育过程中具有广泛的表达模式。在茎尖分生组织,花期过渡和许多花器官,尤其是心皮中。这些模式类似于拟南芥中的RPL。但是,我们的结果表明RPL在维持水果的内侧持久组织中没有保守的作用,但可能与在干罂粟果实中建立推定的开裂区有关。

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