首页> 外文OA文献 >Acquisition and diversification of tendrilled leaves in Bignonieae (Bignoniaceae) involved changes in expression patterns of SHOOTMERISTEMLESS (STM), LEAFY/FLORICAULA(LFY/ FLO), and PHANTASTICA(PHAN)
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Acquisition and diversification of tendrilled leaves in Bignonieae (Bignoniaceae) involved changes in expression patterns of SHOOTMERISTEMLESS (STM), LEAFY/FLORICAULA(LFY/ FLO), and PHANTASTICA(PHAN)

机译:Bignonieae中卷叶的采集和多样化 (Bignoniaceae)涉及表达的变化 无叶(STM),叶/佛罗里达(LFY / FLO)和PHANTASTICA(PHAN)

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摘要

Leaves have undergone structural modifications over evolutionary time, and presently exist in many forms. For instance, in Fabaceae and Bignoniaceae, leaf parts can be modified into tendrils. Currently, no data are available on genic control of tendrilled leaf development outside Fabaceae. Here, we conducted a detailed study of three representatives of Bignonieae: Amphilophium buccinatorium, Dolichandra unguis-cati, and Bignonia callistegioides, bearing multifid, trifid, and simple-tendrilled leaves, respectively. We investigated the structure of their petioles, petiolules, leaflets, and tendrils through histological analyses. Additionally, the expression of SHOOTMERISTEMLESS (STM), PHANTASTICA (PHAN), and LEAFY/FLORICAULA (LFY/FLO) during leaf development was analyzed by in situ hybridizations. Tendrils share some anatomical similarities with leaflets, but not with other leaf parts. Transcripts of both STM and LFY/FLO were detected in leaf primordia, associated with regions from which leaflets and tendril branches originate. PHAN expression was found to be polarized in branched tendrils, but not in simple tendrils. In Bignonieae, tendrils are modified leaflets that, as a result of premature completion of development, become bladeless organs. Bignonieae leaves develop differently from those of peas, as both LFY/FLO and STM are expressed in developing leaves of Bignonieae. Moreover, PHAN is probably involved in tendril diversification in Bignonieae, as it has distinct expression patterns in different leaf types.
机译:叶片在进化过程中经历了结构修饰,目前以多种形式存在。例如,在豆科和紫Big科中,叶片的一部分可以修饰成卷须。目前,尚无有关豆科(Fabaceae)外部的腱叶发育的基因控制的数据。在这里,我们对双生植物的三个代表进行了详细的研究:紫茎泽兰,杜鹃花(Dolichandra unguis-cati)和双生植物Big虫(Bignonia callistegioides),它们分别带有多裂叶,三裂叶和简单卷叶。我们通过组织学分析调查了它们的叶柄,叶柄,小叶和卷须的结构。另外,通过原位杂交分析了在叶片发育过程中SHOOTMERISTEMLESS(STM),PHANTASTICA(PHAN)和LEAFY / FLORICAULA(LFY / FLO)的表达。卷须与小叶有一些解剖上的相似性,但与其他叶部分没有相似性。在叶片原基中检测到STM和LFY / FLO的转录本,这些转录本与小叶和卷须分支起源的区域有关。发现PHAN表达在分支的卷须中极化,但在简单的卷须中没有极化。在Bignonieae中,卷须是经过修饰的小叶,由于过早完成发育而变成无叶器官。双子叶植物的叶片发育与豌豆不同,因为双子叶植物的发育叶片中同时表达了LFY / FLO和STM。此外,PHAN可能参与了Bignonieae中的卷须多样化,因为它在不同叶片类型中具有不同的表达模式。

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