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Functional Analyses of Two Tomato APETALA3 Genes Demonstrate Diversification in Their Roles in Regulating Floral Development[W]

机译:两个番茄APETALA3基因的功能分析表明其在调控花发育中的作用存在差异[W]

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摘要

The floral homeotic APETALA3 (AP3) gene in Arabidopsis thaliana encodes a MADS box transcription factor required for specifying petal and stamen identities. AP3 is a member of the euAP3 lineage, which arose by gene duplication coincident with radiation of the core eudicots. Although Arabidopsis lacks genes in the paralogous Tomato MADS box gene 6 (TM6) lineage, tomato (Solanum lycopersicum) possesses both euAP3 and TM6 genes, which have functionally diversified. A loss-of-function mutation in Tomato AP3 (TAP3) resulted in homeotic transformations of both petals and stamens, whereas RNA interference–induced reduction in TM6 function resulted in flowers with homeotic defects primarily in stamens. The functional differences between these genes can be ascribed partly to different expression domains. When overexpressed in an equivalent domain, both genes can partially rescue the tap3 mutant, indicating that relative levels as well as spatial patterns of expression contribute to functional differences. Our results also indicate that the two proteins have differing biochemical capabilities. Together, these results suggest that TM6 and TAP3 play qualitatively different roles in floral development; they also support the ideas that the ancestral role of AP3 lineage genes was in specifying stamen development and that duplication and divergence in the AP3 lineage allowed for the acquisition of a role in petal specification in the core eudicots.
机译:拟南芥中的花卉同源APETALA3(AP3)基因编码指定花瓣和雄蕊身份所需的MADS盒转录因子。 AP3是euAP3谱系的成员,它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。尽管拟南芥在旁系番茄MADS box基因6(TM6)谱系中缺少基因,但番茄(Solanum lycopersicum)拥有euAP3和TM6基因,它们在功能上已经多样化。番茄AP3(TAP3)的功能丧失突变导致花瓣和雄蕊均发生同种异体转化,而RNA干扰诱导的TM6功能降低导致花朵主要在雄蕊中具有同种异体缺陷。这些基因之间的功能差异可以部分归因于不同的表达域。当在等效域中过表达时,两个基因都可以部分拯救出tap3突变体,表明相对水平以及表达的空间模式都导致功能差异。我们的结果还表明这两种蛋白具有不同的生化能力。总之,这些结果表明TM6和TAP3在花发育中起质性作用。他们还支持以下观点:AP3谱系基因的祖先作用是指定雄蕊的发育,并且AP3谱系的重复和发散允许在核心双子叶植物的花瓣规格中获得作用。

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