首页> 美国卫生研究院文献>The Plant Cell >Expression of SHOOT MERISTEMLESS WUSCHEL and ASYMMETRIC LEAVES1 Homologs in the Shoots of Podostemaceae: Implications for the Evolution of Novel Shoot Organogenesis
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Expression of SHOOT MERISTEMLESS WUSCHEL and ASYMMETRIC LEAVES1 Homologs in the Shoots of Podostemaceae: Implications for the Evolution of Novel Shoot Organogenesis

机译:ME科芽中的无茎矮小和不对称LEAVES1同源表达:对新芽器官发生进化的影响。

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摘要

Podostemaceae (the river weeds) are ecologically and morphologically unusual angiosperms. The subfamily Tristichoideae has typical shoot apical meristems (SAMs) that produce leaves, but Podostemoideae is devoid of SAMs and new leaves arise below the base of older leaves. To reveal the genetic basis for the evolution of novel shoot organogenesis in Podostemaceae, we examined the expression patterns of key regulatory genes for shoot development (i.e., SHOOT MERISTEMLESS (STM), WUSCHEL (WUS), and ASYMMETRIC LEAVES1/ROUGH SHEATH2/PHANTASTICA (ARP) orthologs) in Tristichoideae and Podostemoideae. In the SAM-mediated shoots of Tristichoideae, like in model plants, STM and WUS orthologs were expressed in the SAM. In the SAM-less shoots of Podostemoideae, STM and WUS orthologs were expressed in the initiating leaf/bract primordium. In older leaf/bract primordia, WUS expression disappeared and STM expression became restricted to the basal part, whereas ARP was expressed in the distal part in a complementary pattern to STM expression. In the reproductive shoots of Podostemoideae with a normal mode of flower development, STM and WUS were expressed in the floral meristem, but not in the floral organs, similar to the pattern in model plants. These results suggest that the leaf/bract of Podostemoideae is initiated as a SAM and differentiates into a single apical leaf/bract, resulting in the evolution of novel shoot-leaf mixed organs in Podostemaceae.
机译:do科(河杂草)在生态和形态上是不寻常的被子植物。 Tristichoideideae亚科有典型的芽生枝分生组织(SAMs),可产生叶子,而Podostemoideae则没有SAMs,并且新叶子在老叶子的根部下出现。为了揭示Po科新芽器官发生进化的遗传基础,我们研究了芽发育的关键调控基因(即SHOOT MERISTEMLESS(STM),WUSCHEL(WUS)和ASYMMETRIC LEAVES1 / ROUGH SHEATH2 / PHANTASTICA( ARP)的直系同源物)。像模型植物一样,在SAM介导的毛线虫科枝中,STM和WUS直系同源物在SAM中表达。在无emo科的SAM芽中,STM和WUS直系同源基因在起始叶片/ br片原基中表达。在较老的叶片/ br片原基中,WUS表达消失,STM表达局限于基部,而ARP在远端表达,与STM表达互补。在具有正常花发育模式的d科生殖芽中,STM和 WUS 在分生组织中表达,但在花器官中不表达,类似于模型植物中的模式。这些结果表明,Podostemoideideae的叶片/ br片以SAM的形式启动,并分化为单个顶叶/ br片,从而导致Podostemaceae中新的枝叶混合器官的进化。

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