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Transcript profiles of maize embryo sacs and preliminary identification of genes involved in the embryo sac–pollen tube interaction

机译:玉米胚囊的转录物谱及与胚囊-花粉管相互作用的基因的初步鉴定

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摘要

The embryo sac, the female gametophyte of flowering plants, plays important roles in the pollination and fertilization process. Maize (Zea mays L.) is a model monocot, but little is known about the interactions between its embryo sac and the pollen tube. In this study, we compared the transcript profiles of mature embryo sacs, mature embryo sacs 14–16 h after pollination, and mature nucelli. Comparing the transcript profiles of the embryo sacs before and after the entry of the pollen tube, we identified 3467 differentially expressed transcripts (3382 differentially expressed genes; DEGs). The DEGs were grouped into 22 functional categories. Among the DEGs, 221 genes were induced upon the entry of the pollen tube, and many of them encoded proteins involved in RNA binding, processing, and transcription, signaling, miscellaneous enzyme family processes, and lipid metabolism processes. Genes in the DEG dataset were grouped into 17 classes in a gene ontology enrichment analysis. The DEGs included many genes encoding proteins involved in protein amino acid phosphorylation and protein ubiquitination, implying that these processes might play important roles in the embryo sac–pollen tube interaction. Additionally, our analyses indicate that the expression of 112 genes encoding cysteine-rich proteins (CRPs) is induced during pollination and fertilization. The CRPs likely regulate pollen tube guidance and embryo sac development. These results provide important information on the genes involved in the embryo sac–pollen tube interaction in maize.
机译:胚囊是开花植物的雌配子体,在授粉和受精过程中起着重要作用。玉米(Zea mays L.)是单子叶植物的典范,但对其胚囊和花粉管之间的相互作用了解甚少。在这项研究中,我们比较了成熟胚囊,授粉后14-16 h的成熟胚囊和成熟核的转录本谱。比较花粉管进入之前和之后胚囊的转录本谱,我们鉴定了3467个差异表达的转录本(3382个差​​异表达的基因; DEG)。 DEG分为22个功能类别。在DEG中,花粉管进入后诱导了221个基因,其中许多编码的蛋白质参与RNA结合,加工和转录,信号传导,其他酶家族过程和脂质代谢过程。在基因本体富集分析中,DEG数据集中的基因分为17类。 DEGs包含许多编码涉及蛋白质氨基酸磷酸化和蛋白质泛素化的蛋白质的基因,这表明这些过程可能在胚囊-花粉管相互作用中起重要作用。此外,我们的分析表明,在授粉和受精过程中诱导了112个编码富含半胱氨酸的蛋白质(CRP)的基因的表达。 CRP可能调节花粉管的引导和胚囊的发育。这些结果提供了有关玉米胚囊与花粉管相互作用的基因的重要信息。

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