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首页> 外文期刊>Annals of Botany >Synorganisation without organ fusion in the flowers of Geranium robertianum (Geraniaceae) and its not so trivial obdiplostemony.
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Synorganisation without organ fusion in the flowers of Geranium robertianum (Geraniaceae) and its not so trivial obdiplostemony.

机译:天竺葵花(Geraniaceae)的花中没有器官融合的共生组织,其琐碎的双斜茎。

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BACKGROUND AND AIMS: Synorganisation of floral organs, an important means in angiosperm flower evolution, is mostly realized by congenital or post-genital organ fusion. Intimate synorganisation of many floral organs without fusion, as present in Geranium robertianum, is poorly known and needs to be studied. Obdiplostemony, the seemingly reversed position of two stamen whorls, widely distributed in core eudicots, has been the subject of much attention, but there is confusion in the literature. Obdiplostemony occurs in Geranium and whether and how it is involved in this synorganisation is explored here. METHODS: Floral development and architecture were studied with light microscopy based on microtome section series and with scanning electron microscopy. KEY RESULTS: Intimate synorganisation of floral organs is effected by the formation of five separate nectar canals for the proboscis of pollinators. Each nectar canal is formed by six adjacent organs from four organ whorls. In addition, the sepals are hooked together by the formation of longitudinal ribs and grooves, and provide a firm scaffold for the canals. Obdiplostemony provides a guide rail within each canal formed by the flanks of the antepetalous stamen filaments. CONCLUSIONS: Intimate synorganisation in flowers can be realized without any fusion, and obdiplostemony may play a role in this synorganisation.
机译:背景与目的:花器官的组织化是被子植物花进化的重要手段,大多是通过先天性或生殖器后融合来实现的。如在天竺葵中存在的许多没有融合的花器官的亲密组织是鲜为人知的,需要进行研究。 Obdiplostemony,在雄性双子叶植物中广泛分布的两个雄蕊轮的看似相反的位置,已引起广泛关注,但文献中存在混淆。 Obbiplostemony发生在天竺葵中,这里探讨了它是否以及如何参与到这个共同组织中。方法:基于切片机系列的光学显微镜和扫描电子显微镜研究花卉的发育和结构。关键结果:花粉器官的亲密组织是通过为授粉媒介的长鼻形成五个独立的花蜜管而实现的。每个花蜜管由四个器官轮的六个相邻器官组成。此外,萼片通过形成纵向肋和凹槽而钩在一起,并为运河提供了牢固的支架。 Obdiplostemony在由雄蕊雄蕊丝的侧面形成的每条运河中提供一条导轨。结论:可以在没有任何融合的情况下实现花中的亲密合生,而双生可能在该合生中起作用。

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