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拟南芥 D 类 MADS -box 基因 BdMADS2 和 BdMADS4 的功能分化。

Functional divergence of two duplicated D-lineage MADS-box genes BdMADS2 and BdMADS4 from Brachypodium distachyon.

机构信息

The State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, PR China.

出版信息

J Plant Physiol. 2013 Mar 1;170(4):424-31. doi: 10.1016/j.jplph.2012.11.013. Epub 2012 Dec 31.

Abstract

MADS-box genes are core members of the ABCDE model for flower development where D-lineage genes play essential roles in ovule identity determination. We report here the cloning and functional characterization of two duplicated MADS-box genes, BdMADS2 and BdMADS4 from Brachypodium distachyon, the model plant of temperate grasses. BdMADS2 and BdMADS4 were highly similar to grass D-lineage MADS-box genes on the protein level and they fell in a distinctive clade on the phylogenetic tree, with conserved intron/exon structures to their rice and maize orthologues. Quantitative real time PCR revealed comparable expression levels were detected in all floral organs of Brachypodium for both genes, except for the carpel where the expression level of BdMADS2 was five times higher than that of BdMADS4. Over expression of these two genes in Arabidopsis caused curly rosette leaves, small sepals and petals, and early flowering. However, BdMADS4 showed stronger phenotypic effects than BdMADS2, suggesting functional divergence between the two genes. Cis-regulatory element prediction showed that the promoter region (including the first intron) of BdMADS4 possesses much less class I BPC protein binding motifs than that of BdMADS2 which may be responsible for the specific expression in carpels. Yeast two-hybrid assays showed that both BdMADS2 and BdMADS4 can interact with BdSEP3, but BdMADS2 can additionally interact with the putative APETALA1 orthologue (BdAP1), suggesting a deviation in their protein interaction patterns. Taken together, our data demonstrate a significant divergence between the two Brachypodium D-lineage MADS-box genes and provide evidences for their sub-functionalization.

摘要

MADS-box 基因是花发育 ABCDE 模型的核心成员,其中 D 谱系基因在胚珠身份确定中起着至关重要的作用。我们在这里报告了拟南芥和黍属植物两个重复 MADS-box 基因 BdMADS2 和 BdMADS4 的克隆和功能特征。BdMADS2 和 BdMADS4 在蛋白质水平上与草类 D 谱系 MADS-box 基因高度相似,它们在系统发育树上属于一个独特的分支,与它们的水稻和玉米同源基因具有保守的内含子/外显子结构。定量实时 PCR 显示,这两个基因在拟南芥的所有花器官中都有类似的表达水平,除了心皮,BdMADS2 的表达水平是 BdMADS4 的五倍。这两个基因在拟南芥中的过表达导致了卷曲的莲座叶、小萼片和花瓣以及早期开花。然而,BdMADS4 表现出比 BdMADS2 更强的表型效应,表明这两个基因之间存在功能分化。顺式调控元件预测表明,BdMADS4 的启动子区域(包括第一内含子)比 BdMADS2 少得多的 I 类 BPC 蛋白结合基序,这可能是其在心皮中特异表达的原因。酵母双杂交实验表明,BdMADS2 和 BdMADS4 都可以与 BdSEP3 相互作用,但 BdMADS2 还可以与假定的 APETALA1 同源物(BdAP1)相互作用,这表明它们的蛋白质相互作用模式存在差异。总之,我们的数据表明,这两个黍属植物 D 谱系 MADS-box 基因之间存在显著的分化,并为它们的亚功能化提供了证据。

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