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首页> 外文期刊>Molecular cell >Molecular and genetic analyses of the silky1 gene reveal conservation in floral organ specification between eudicots and monocots.
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Molecular and genetic analyses of the silky1 gene reveal conservation in floral organ specification between eudicots and monocots.

机译:对Silky1基因的分子和遗传分析表明,在双子叶植物和双子叶植物之间的花器官规格中具有保守性。

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摘要

The degree to which the eudicot-based ABC model of flower organ identity applies to the other major subclass of angrosperms, the monocots, has yet to be fully explored. We cloned silky1 (si1), a male sterile mutant of Zea mays that has homeotic conversions of stamens into carpels and lodicules into palea/lemma-like structures. Our studies indicate that si1 is a monocot B function MADS box gene. Moreover, the si1 zag1 double mutant produces a striking spikelet phenotype where normal glumes enclose reiterated palea/lemma-like organs. These studies indicate that B function gene activity is conserved among monocots as well as eudicots. In addition, they provide compelling developmental evidence for recognizing lodicules as modified petals and, possibly, palea and lemma as modified sepals.
机译:基于eudicot的ABC模式的花器官特征模型在多大程度上被子植物的单子叶植物中使用,尚待充分探索。我们克隆了Silky1(si1),玉米雄性不育的雄性突变体,雄蕊的同种异体转化为心皮,lo片为同种异体/内lem样结构。我们的研究表明si1是单子叶植物B功能MADS盒基因。此外,si1 zag1双突变体产生惊人的小穗表型,其中正常的颖壳包围着重申的帕拉/内/样器官。这些研究表明,B功能基因活性在单子叶植物和双子叶植物之间是保守的。此外,它们提供了令人信服的发育证据,可以将dic片识别为修饰的花瓣,并且可能将pala和lemma识别为修饰的萼片。

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