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Organ boundary NAC-domain transcription factors are implicated in the evolution of petal fusion

机译:器官边界NAC域转录因子参与花瓣融合的演变。

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Research rationale: Evolution of fused petals (sympetaly) is considered to be an important innovation that has repeatedly led to increased pollination efficiency, resulting in accelerated rates of plant diversification. Although little is known about the underlying regulation of sympetaly, genetic pathways ancestrally involved in organ boundary establishment (e.g. CUP SHAPED COTYLEDON [CUC] 1-3 genes) are strong candidates. In sympetalous petunia, mutations in the CUC1/2-like orthologue NO APICAL MERISTEM (NAM) inhibit shoot apical meristem formation. Despite this, occasional 'escape shoots' develop flowers with extra petals and fused inter-floral whorl organs.
机译:研究的基本原理:融合花瓣(有症状的)的进化被认为是一项重要的创新,不断地提高了授粉效率,从而加快了植物多样化的速度。尽管对共鸣的潜在调控知之甚少,但祖先参与器官边界建立的遗传途径(例如杯形子叶[CUC] 1-3基因)是强力候选者。在共生的矮牵牛中,CUC1 / 2样直向同源物NO APICAL MERISTEM(NAM)中的突变抑制了茎尖分生组织的形成。尽管如此,偶尔的“逃生芽”仍会生长出具有额外花瓣和融合的花间轮生器官的花朵。

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