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Expression patterns of Passiflora edulis APETALA1/FRUITFULL homologues shed light onto tendril and corona identities

机译:西番莲APETALA1 / FRUITFULL同源物的表达模式揭示了卷须和电晕特性

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Background Passiflora (passionflowers) makes an excellent model for studying plant evolutionary development. They are mostly perennial climbers that display axillary tendrils, which are believed to be modifications of the inflorescence. Passionflowers are also recognized by their unique flower features, such as the extra whorls of floral organs composed of corona filaments and membranes enclosing the nectary. Although some work on Passiflora organ ontogeny has been done, the developmental identity of both Passiflora tendrils and the corona is still controversial. Here, we combined ultrastructural analysis and expression patterns of the flower meristem and floral organ identity genes of the MADS-box AP1 / FUL clade to reveal a possible role for these genes in the generation of evolutionary novelties in Passiflora . ResultsWe followed the development of structures arising from the axillary meristem from juvenile to adult phase in P. edulis . We further assessed the expression pattern of P. edulis AP1 / FUL homologues ( PeAP1 and PeFUL ), by RT-qPCR and in situ hybridization in several tissues, correlating it with the developmental stages of P. edulis . PeAP1 is expressed only in the reproductive stage, and it is highly expressed in tendrils and in flower meristems from the onset of their development. PeAP1 is also expressed in sepals, petals and in corona filaments, suggesting a novel role for PeAP1 in floral organ diversification. PeFUL presented a broad expression pattern in both vegetative and reproductive tissues, and it is also expressed in fruits. ConclusionsOur results provide new molecular insights into the morphological diversity in the genus Passiflora . Here, we bring new evidence that tendrils are part of the Passiflora inflorescence. This points to the convergence of similar developmental processes involving the recruitment of genes related to flower identity in the origin of tendrils in different plant families. The data obtained also support the hypothesis that the corona filaments are likely sui generis floral organs. Additionally, we provide an indication that PeFUL acts as a coordinator of passionfruit development.
机译:背景西番莲(西番莲)是研究植物进化发育的绝佳模型。他们大多是常年攀登,具腋生卷须,据认为是花序的变种。西番莲也因其独特的花特征而得到认可,例如由花冠丝和包围蜜腺的膜组成的花器官的额外轮生。尽管已经完成了西番莲器官发生的一些工作,但西番莲卷须和日冕的发育特性仍存在争议。在这里,我们结合了超结构分析和MADS-box AP1 / FUL进化枝的花分生组织和花器官同一性基因的表达模式,揭示了这些基因在西番莲进化新世代中的可能作用。结果我们追踪了食用假单胞菌从幼年到成年期腋生分生组织的结构演变。我们通过RT-qPCR和原位杂交在几个组织中进一步评估了可食假单胞菌AP1 / FUL同源物(PeAP1和PeFUL)的表达模式,并将其与可食假单胞菌的发育阶段相关联。 PeAP1仅在生殖阶段表达,并且从卷须和花分生组织的发育开始就高度表达。 PeAP1还可以在萼片,花瓣和日冕丝中表达,表明PeAP1在花器官多样化中具有新的作用。 PeFUL在营养和生殖组织中均表现出广泛的表达模式,并且也在水果中表达。结论我们的研究结果为西番莲属的形态多样性提供了新的分子认识。在这里,我们带来了新的证据,即卷须是西番莲花序的一部分。这表明相似的发育过程的趋同,涉及在不同植物科的卷须起源中募集与花身份相关的基因。获得的数据还支持了这样的假设,即电晕丝可能是特殊的花器官。此外,我们提供了PeFUL充当百香果开发协调员的指示。

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