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首页> 外文期刊>American Journal of Botany >Towards unlocking the deep nodes of Leguminosae: Floral development and morphology of the enigmatic Duparquetia orchidacea (Leguminosae, Caesalpinioideae)
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Towards unlocking the deep nodes of Leguminosae: Floral development and morphology of the enigmatic Duparquetia orchidacea (Leguminosae, Caesalpinioideae)

机译:试图解锁豆科的深层结节:神秘杜鹃花(豆科,Ca科)的花发育和形态

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摘要

Duparquetia orchidacea (Caesalpinioideae-Cassieae-Duparquetiinae) is a monotypic liana from tropical West Africa. Its highly unusual, zygomorphic flowers, the unique pollen morphology, and the lack of vestured pits in the wood correspond with previous phylogenetic studies that resolved the position of the species to an isolated position among the early-branching Leguminosae. Here we present a detailed analysis of floral morphology and development to clarify open questions of its floral organization. We provide new data that can be useful in clarifying phylogenetic relationships among early branching Leguminosae and improve our understanding of floral evolution in this large and important plant family. For comparison, we also present developmental data for other Fabales. Our analysis reveals some unusual and in parts unique developmental patterns, such as strict acropetal organ formation, loss and suppression of floral organs, and early petal enlargement. We interpret alternating left-right symmetries in floral development as clues to a spiral organ formation in ancestral taxa. Early asymmetry of the young carpel helps to interpret enantiostyly of other Leguminosae as an example of imprinted shape. Finally, we show that cochlear-descending petal aestivation in Duparquetia and in Papilionoideae is based on different ontogenetic patterns and therefore is most probably nonhomologous.
机译:兰花杜鹃花(Caesalpinioideae-Cassieae-Duparquetiinae)是来自热带西非的单株藤本植物。其高度不寻常的合子花,独特的花粉形态以及木材中没有遗留的凹坑与先前的系统发育研究相符,该研究将该物种的位置解析为早枝豆科中的一个孤立位置。在这里,我们对花的形态和发育进行了详细的分析,以阐明其花组织的开放性问题。我们提供了新的数据,可用于阐明早期分支豆科的系统发育关系,并增进我们对这个重要的大型植物科中花卉进化的理解。为了进行比较,我们还提供了其他Fabales的发展数据。我们的分析揭示了一些不寻常且部分独特的发育模式,例如严格的上肢器官形成,花器官的丧失和抑制以及花瓣的早期膨大。我们将花期发育中左右交替的对称性解释为祖先分类单元中螺旋器官形成的线索。幼皮的早期不对称有助于将其他豆科的对映体解释为印迹形状的一个例子。最后,我们证明了杜巴克蒂亚和蝶形科中人工下降的花瓣是基于不同的个体发育模式,因此很可能是非同源的。

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