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首页> 外文期刊>The Plant Cell >The armadillo repeat gene ZAK IXIK promotes Arabidopsis early embryo and endosperm development through a distinctive gametophytic maternal effect.
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The armadillo repeat gene ZAK IXIK promotes Arabidopsis early embryo and endosperm development through a distinctive gametophytic maternal effect.

机译:犰狳重复基因ZAK IXIK通过独特的配子体生母效应促进拟南芥早期胚和胚乳发育。

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摘要

The proper balance of parental genomic contributions to the fertilized embryo and endosperm is essential for their normal growth and development. The characterization of many gametophytic maternal effect (GME) mutants affecting seed development indicates that there are certain classes of genes with a predominant maternal contribution. We present a detailed analysis of the GME mutant zak ixik (zix), which displays delayed and arrested growth at the earliest stages of embryo and endosperm development. ZIX encodes an Armadillo repeat (Arm) protein highly conserved across eukaryotes. Expression studies revealed that ZIX manifests a GME through preferential maternal expression in the early embryo and endosperm. This parent-of-origin-dependent expression is regulated by neither the histone and DNA methylation nor the DNA demethylation pathways known to regulate some other GME mutants. The ZIX protein is localized in the cytoplasm and nucleus of cells in reproductive tissues and actively dividing root zones. The maternal ZIX allele is required for the maternal expression of MINISEED3. Collectively, our results reveal a reproductive function of plant Arm proteins in promoting early seed growth, which is achieved through a distinct GME of ZIX that involves mechanisms for maternal allele-specific expression that are independent of the well-established pathways.
机译:父母基因组对受精胚胎和胚乳的适当平衡对它们的正常生长和发育至关重要。许多影响种子发育的配子体母体效应(GME)突变体的特征表明,某些类别的基因对母体起着重要作用。我们介绍了GME突变体zak ixik(zix)的详细分析,该突变体在胚胎和胚乳发育的最早阶段显示出延迟和停滞的生长。 ZIX编码一种在真核生物中高度保守的犰狳重复(Arm)蛋白。表达研究表明,ZIX通过优先在早期胚胎和胚乳中的母体表达来表达GME。这种起源于母体的表达既不受组蛋白和DNA甲基化的调节,也不受已知调节某些其他GME突变体的DNA脱甲基途径的调节。 ZIX蛋白位于生殖组织中的细胞质和细胞核中,并活跃地分裂根区。 MINISEED3的母体表达需要母体ZIX等位基因。总的来说,我们的结果揭示了植物Arm蛋白在促进早期种子生长中的生殖功能,这是通过ZIX的独特GME实现的,该GME涉及母本等位基因特异性表达的机制,而该机制独立于成熟的途径。

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