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Specific duplication and dorsoventrally asymmetric expression patterns of Cycloidea-like genes in zygomorphic species of Ranunculaceae.

机译:毛an科植物的合型物种中Cycloidea样基因的特定复制和背腹不对称表达模式。

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摘要

Floral bilateral symmetry (zygomorphy) has evolved several times independently in angiosperms from radially symmetrical (actinomorphic) ancestral states. Homologs of the Antirrhinum majus Cycloidea gene (Cyc) have been shown to control floral symmetry in diverse groups in core eudicots. In the basal eudicot family Ranunculaceae, there is a single evolutionary transition from actinomorphy to zygomorphy in the stem lineage of the tribe Delphinieae. We characterized Cyc homologs in 18 genera of Ranunculaceae, including the four genera of Delphinieae, in a sampling that represents the floral morphological diversity of this tribe, and reconstructed the evolutionary history of this gene family in Ranunculaceae. Within each of the two RanaCyL (Ranunculaceae Cycloidea-like) lineages previously identified, an additional duplication possibly predating the emergence of the Delphinieae was found, resulting in up to four gene copies in zygomorphic species. Expression analyses indicate that the RanaCyL paralogs are expressed early in floral buds and that the duration of their expression varies between species and paralog class. At most one RanaCyL paralog was expressed during the late stages of floral development in the actinomorphic species studied whereas all paralogs from the zygomorphic species were expressed, composing a species-specific identity code for perianth organs. The contrasted asymmetric patterns of expression observed in the two zygomorphic species is discussed in relation to their distinct perianth architecture.
机译:花的双侧对称性(合子)在被子植物中独立于径向对称(放射状)祖先状态进化了数次。已显示抗大花青蟹Cycloidea基因(Cyc)的同系物在核心双子叶植物的不同组中控制花的对称性。在基底双子叶植物毛an科中,Delphinieae部落的茎系中有一个从放线型到合子的单一进化过渡。我们以代表该部落花卉形态多样性的采样为特征,对毛an科的18个属(包括Delphinieae的四个属)的Cyc同源物进行了表征,并重建了该基因家族在毛an科中的进化史。在先前鉴定出的两个RanaCyL(毛ae科类Cycloidea)谱系的每一个中,都发现了可能在Delphinieae出现之前进行的另一次复制,导致在合型物种中最多复制了四个基因。表达分析表明,RanaCyL旁系同源物在花蕾中早期表达,并且它们的表达持续时间在物种和旁系同源物类别之间变化。在研究的放线型物种中,至多一个RanaCyL旁系同源物在花发育的晚期被表达,而来自合子形物种的所有旁系同源物都被表达,组成花被器官的物种特异性识别码。讨论了在两个合型物种中观察到的对比的不对称表达模式,以及它们独特的花被结构。

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