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首页> 外文期刊>The Plant Cell >Elaboration of B gene function to include the identity of novel floral organs in the lower eudicot Aquilegia
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Elaboration of B gene function to include the identity of novel floral organs in the lower eudicot Aquilegia

机译:B基因功能的完善,包括在较低的双子叶植物A中的新型花器官的身份

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The basal eudicot Aquilegia (columbine) has an unusual floral structure that includes two morphologically distinct whorls of petaloid organs and a clearly differentiated fifth organ type, the staminodium. In this study, we have sought to determine how Aquilegia homologs of the B class genes APETALA3 (AP3) and PISTILLATA (PI) contribute to these novel forms of organ identity. Detailed expression analyses of the three AP3 paralogs and one PI homolog in wild-type and floral homeotic mutant lines reveal complex patterns that suggest that canonical B class function has been elaborated in Aquilegia. Yeast two-hybrid studies demonstrate that the protein products of Aquilegia's AP3 and PI homologs can form heterodimers, much like what has been observed for their core eudicot homologs. Downregulation of AqvPI using virus-induced gene silencing indicates that in addition to petal and stamen identity, this locus is essential to staminodial identity but may not control the identity of the petaloid sepals. Our findings show that preexisting floral organ identity programs can be partitioned and modified to produce additional organ types. In addition, they indicate that some types of petaloid organs are not entirely dependent on AP3/PI homologs for their identity.
机译:基底真双子叶植物A羽草(哥伦拜恩)具有不寻常的花结构,其中包括两个形态不同的花瓣状器官轮和一个明显分化的第五器官类型-茎线虫。在这项研究中,我们试图确定B类基因APETALA3(AP3)和PISTILLATA(PI)的Aquilegia同源物如何促进这些新颖形式的器官识别。在野生型和花卉同源突变体系中对三个AP3旁系同源物和一个PI同源物的详细表达分析揭示了复杂的模式,表明在Aquilegia中已经阐明了经典的B类功能。酵母两杂交研究表明,Aquilegia的AP3和PI同源物的蛋白质产物可以形成异二聚体,就像已观察到其核心双子叶植物同源物一样。使用病毒诱导的基因沉默对AqvPI的下调表明,除了花瓣和雄蕊相同外,该基因座对于氨基酸的识别也是必不可少的,但可能无法控制花瓣状萼片的同一性。我们的发现表明,可以将先前存在的花器官识别程序进行分区和修改,以产生其他器官类型。此外,它们表明某些类型的花瓣状器官的身份不完全依赖于AP3 / PI同源物。

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