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首页> 外文期刊>Developmental cell >Role of EVERGREEN in the development of the cymose petunia inflorescence.
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Role of EVERGREEN in the development of the cymose petunia inflorescence.

机译:EVERGREEN在菊苣矮牵牛花序发育中的作用。

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摘要

Plants species diverge with regard to the time and place where they make flowers. Flowers can develop from apical meristems, lateral meristems, or both, resulting in three major inflorescence types known as racemes, cymes, and panicles, respectively. The mechanisms that determine a racemose architecture have been uncovered in Arabidopsis and Antirrhinum. To understand how cymes are specified, we studied mutations that alter the petunia inflorescence. Here we show that EVERGREEN (EVG) encodes a WOX homeodomain protein, which is exclusively expressed in incipient lateral inflorescence meristems (IMs), promoting their separation from the apical floral meristem (FM). This is essential for activation of DOUBLE TOP and specification of floral identity. Mutations that change the cymose petunia inflorescence into a solitary flower fully suppress the evg phenotype. Our data suggest a key role for EVG in the diversification of inflorescence architectures and reveal an unanticipated link between the proliferationand identity of meristems.
机译:植物在开花的时间和地点方面存在差异。花可以从顶端分生组织,侧生分生组织或同时从两者产生,从而导致三种主要的花序类型,分别称为外消旋体,聚伞花序和圆锥花序。决定外消旋体结构的机制已在拟南芥和Antirrhinum中发现。为了了解如何指定聚伞花序,我们研究了改变矮牵牛花序的突变。在这里,我们显示EVERGREEN(EVG)编码WOX同源域蛋白,该蛋白仅在初期侧生花序分生组织(IMs)中表达,从而促进它们与顶端花分生组织(FM)分离。这对于激活DOUBLE TOP和指定花卉身份至关重要。将cymose矮牵牛花序变成单花的突变完全抑制了evg表型。我们的数据表明,EVG在花序结构的多样化中起着关键作用,并揭示了分生组织的增殖与同一性之间的意外联系。

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