首页> 美国卫生研究院文献>The EMBO Journal >Bracteomania an inflorescence anomaly is caused by the loss of function of the MADS-box gene squamosa in Antirrhinum majus.
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Bracteomania an inflorescence anomaly is caused by the loss of function of the MADS-box gene squamosa in Antirrhinum majus.

机译:花痴异常是一种引起花痴的现象其原因是Antirrhinum majus中MADS-box基因鳞片的功能丧失。

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摘要

Anomalous flowering of the Antirrhinum majus mutant squamosa (squa) is characterized by excessive formation of bracts and the production of relatively few and often malformed or incomplete flowers. To study the function of squamosa in the commitment of an inflorescence lateral meristem to floral development, the gene was cloned and its genomic structure, a well as that of four mutant alleles, was determined. SQUA is a member of a family of transcription factors which contain the MADS-box, a conserved DNA binding domain. In addition, we analysed the temporal and spatial expression pattern of the squa gene. Low transcriptional activity of squa is detectable in bracts and in the leaves immediately below the inflorescence. High squa transcript levels are seen in the inflorescence lateral meristems as soon as they are formed in the axils of bracts. Squa transcriptional activity persists through later stages of floral morphogenesis, with the exception of stamen differentiation. Although necessary for shaping a normal racemose inflorescence, the squa function is not absolutely essential for flower development. We discuss the function of the gene during flowering, its likely functional redundancy and its possible interaction with other genes participating in the genetic control of flower formation in Antirrhinum.
机译:金鱼草(Antirrhinum majus)突变体鳞(squamosa)的异常开花的特征是excessive片的过度形成和产生的花相对较少,并且经常畸形或不完整。为了研究鳞状花序在花序侧生分生组织对花发育的作用中的功能,克隆了该基因并确定了其基因组结构以及四个突变等位基因。 SQUA是包含MADS-box(保守的DNA结合域)的转录因子家族的成员。此外,我们分析了squa基因的时空表达模式。 squas的低转录活性可在detect片和紧靠花序的叶片中检测到。一旦在in的腋芽中形成,在侧生分生组织中就可以看到高水平的转录本水平。除雄蕊分化外,Squa转录活性一直持续到花卉形态发生的后期。尽管塑造正常的总状花序是必需的,但平方功能对于花的发育并不是绝对必要的。我们讨论了该基因在开花过程中的功能,其可能的功能冗余及其与其他基因的相互作用,这些基因参与了后草中花形成的遗传控制。

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