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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Ectopic expression of FaesAP3, a Fagopyrum esculentum (Polygonaceae) AP3 orthologous gene rescues stamen development in an Arabidopsis ap3 mutant.
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Ectopic expression of FaesAP3, a Fagopyrum esculentum (Polygonaceae) AP3 orthologous gene rescues stamen development in an Arabidopsis ap3 mutant.

机译:FaesAP3(一种荞麦属(Pogongonaceae)AP3直系同源基因)的异位表达可拯救拟南芥ap3突变体中的雄蕊发育。

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摘要

Arabidopsis thaliana APETALA3 (AP3) and Antirrhinum majus DEFICIENS (DEF) MADS box genes are required to specify petal and stamen identity. AP3 and DEF are members of the euAP3 lineage, which arose by gene duplication coincident with radiation of the core eudicots. In order to investigate the molecular mechanisms underlying organ development in early diverging clades of core eudicots, we isolated and identified an AP3 homolog, FaesAP3, from Fagopyrum esculentum (buckwheat, Polygonaceae), a multi-food-use pseudocereal with healing benefits. Protein sequence alignment and phylogenetic analyses revealed that FaesAP3 grouped into the euAP3 lineage. Expression analysis showed that FaesAP3 was transcribed only in developing stamens, and differed from AP3 and DEF, which expressed in developing petals and stamens. Moreover, ectopic expression of FaesAP3 rescued stamen development without complementation of petal development in an Arabidopsis ap3 mutant. Our results suggest that FaesAP3 is involved in the development of stamens in buckwheat. These results also suggest that FaesAP3 holds some potential for biotechnical engineering to create a male sterile line of F. esculentum.
机译:需要拟南芥APETALA3(AP3)和马兜铃DEFICIENS(DEF)MADS盒基因来指定花瓣和雄蕊的身份。 AP3和DEF是euAP3谱系的成员,它们是通过基因复制与核心双子叶植物的辐射同时出现而产生的。为了研究核心双子叶植物早期分化进化枝中器官发育的分子机制,我们从Fagopyrum esculentum(荞麦,Poly科)中分离并鉴定了一个AP3同源物FaesAP3,Fagopyrum esculentum(荞麦,Poly科)是一种具有多种食品用途的假谷物,具有治愈作用。蛋白质序列比对和系统发育分析表明FaesAP3属于euAP3谱系。表达分析表明,FaesAP3仅在发育中的雄蕊中转录,与AP3和DEF不同,后者在发育中的花瓣和雄蕊中表达。此外,在拟南芥ap3突变体中,FaesAP3的异位表达可拯救雄蕊发育,而无需花瓣发育的补充。我们的结果表明FaesAP3参与了荞麦雄蕊的发育。这些结果还表明,FaesAP3在生物技术工程方面具有一定的潜力,可用于创建雄性不育F. esculentum。

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