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首页> 外文期刊>The Plant Cell >Analysis of the Petunia TM6 MADS box gene reveals functional divergence within the DEF/AP3 lineage.
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Analysis of the Petunia TM6 MADS box gene reveals functional divergence within the DEF/AP3 lineage.

机译:对矮牵牛TM6 MADS box基因的分析揭示了DEF / AP3谱系内的功能差异。

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Antirrhinum majus DEFICIENS (DEF) and Arabidopsis thaliana APETALA3 (AP3) MADS box proteins are required to specify petal and stamen identity. Sampling of DEF/AP3 homologs revealed two types of DEF/AP3 proteins, euAP3 and TOMATO MADS BOX GENE6 (TM6), within core eudicots, and we show functional divergence in Petunia hybrida euAP3 and TM6 proteins. Petunia DEF (also known as GREEN PETALS [GP]) is expressed mainly in whorls 2 and 3, and its expression pattern remains unchanged in a blind (bl) mutant background, in which the cadastral C-repression function in the perianth is impaired. Petunia TM6 functions as a B-class organ identity protein only in the determination of stamen identity. Atypically, Petunia TM6 is regulated like a C-class rather than a B-class gene, is expressed mainly in whorls 3 and 4, and is repressed by BL in the perianth, thereby preventing involvement in petal development. A promoter comparison between DEF and TM6 indicates an important change in regulatory elements during or after the duplication that resulted in euAP3- and TM6-type genes. Surprisingly, although TM6 normally is not involved in petal development, 35S-driven TM6 expression can restore petal development in a def (gp) mutant background. Finally, we isolated both euAP3 and TM6 genes from seven solanaceous species, suggesting that a dual euAP3/TM6 B-function system might be the rule in the Solanaceae..
机译:需要用抗掌金鱼(DEF)和拟南芥APETALA3(AP3)MADS盒蛋白来指定花瓣和雄蕊的身份。 DEF / AP3同源物的采样显示核心双子叶植物内有两种类型的DEF / AP3蛋白euAP3和TOMATO MADS BOX GENE6(TM6),并且我们显示了矮牵牛euAP3和TM6蛋白的功能差异。矮牵牛DEF(也称为绿色花瓣[GP])主要在螺纹2和3中表达,并且其表达模式在盲(bl)突变背景中保持不变,而花被中的地籍C抑制功能受损。矮牵牛TM6仅在雄蕊同一性测定中才起B类器官同一性蛋白的作用。通常,矮牵牛TM6像C类而非B类基因一样受到调控,主要在3号和4号螺纹中表达,并在花被中被BL抑制,从而阻止了花瓣的发育。 DEF和TM6之间的启动子比较表明,在复制过程中或复制后,导致euAP3-和TM6型基因的调节元件发生了重要变化。出人意料的是,尽管TM6通常不参与花瓣发育,但35S驱动的TM6表达可以在def(gp)突变体背景下恢复花瓣发育。最后,我们从七个茄科物种中分离了euAP3和TM6基因,这表明茄科中可能存在双重euAP3 / TM6 B功能系统。

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