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首页> 外文期刊>Plant Molecular Biology >ZmEBE genes show a novel, continuous expression pattern in the central cell before fertilization and in specific domains of the resulting endosperm after fertilization
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ZmEBE genes show a novel, continuous expression pattern in the central cell before fertilization and in specific domains of the resulting endosperm after fertilization

机译:ZmEBE基因在受精前在中央细胞中和受精后在胚乳的特定结构域中显示出新颖的连续表达模式

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Two novel maize genes expressed specifically in the central cell of the female gametophyte and in two compartments of the endosperm (the basal endosperm transfer layer and the embryo surrounding region) were characterized. The ZmEBE (embryo sac/basal endosperm transfer layer/embryo surrounding region) genes were isolated by a differential display between the upper and the lower half of the kernel at 7 days after pollination (DAP). Sequence analysis revealed ORFs coding for two closely related proteins of 304 amino acids (ZmEBE-1) and 286 amino acids (ZmEBE-2). This size difference was due to differences in the splicing of the two genes. Both protein sequences showed significant similarity to the DUF239 family of Arabidopsis, a group of 22 proteins of unknown function, a small number of which are putative peptidases. ZmEBE genes had a novel cell type-specific expression pattern in the central cell before and the resulting endosperm after fertilization. RT-PCR analysis showed that the expression of both genes started before pollination in the central cell and continued in the kernel up to 20 DAP with a peak at 7 DAP. In situ hybridization revealed that the expression in the kernel was restricted to the basal transfer cell layer and the embryo surrounding region of the endosperm. The expression of ZmEBE-1 was at least 10 times lower than that of ZmEBE-2. Similarly to other genes expressed in the endosperm, ZmEBE-1 expression was subject to a parent-of-origin effect, while no such effect was detected in ZmEBE-2. Sequence analysis of upstream regions revealed a potential cis element of 33 bp repeated 7 times in ZmEBE-1 and ZmEBE-2 between positions -900 and -100. The 1.6 kb ZmEBE-2 upstream sequence containing the seven R7 elements was able to confer expression in the basal endosperm to a Gus reporter gene. These data indicate that ZmEBE is potentially involved in the early development of specialized domains of the endosperm and that this process is possibly already initiated in the central cell, which is at the origin of the endosperm.
机译:表征了在雌配子体中央细胞和胚乳的两个区室(基础胚乳转移层和胚周围区域)中特异性表达的两个新的玉米基因。通过授粉后第7天(DAP),在籽粒的上半部和下半部之间进行差异展示,分离了ZmEBE(胚囊/基础胚乳转移层/胚周围区域)基因。序列分析显示,ORF编码两个紧密相关的蛋白质,分别为304个氨基酸(ZmEBE-1)和286个氨基酸(ZmEBE-2)。这种大小差异是由于两个基因的剪接差异。两种蛋白序列均显示出与拟南芥的DUF239家族的显着相似性,后者是22种功能未知的蛋白,其中少数是推定的肽酶。 ZmEBE基因在受精前和受精后的胚乳中均具有新的细胞类型特异性表达模式。 RT-PCR分析表明,这两个基因的表达在授粉之前在中央细胞中开始,并在籽粒中持续到20 DAP,峰值在7 DAP。原位杂交表明,仁中的表达仅限于基础转移细胞层和胚乳的胚周围区域。 ZmEBE-1的表达至少比ZmEBE-2低10倍。与胚乳中表达的其他基因相似,ZmEBE-1的表达也有母本效应,而在ZmEBE-2中未检测到这种效应。上游区域的序列分析显示,ZmEBE-1和ZmEBE-2在-900和-100位之间重复了7次,共33 bp的潜在顺式元件。包含七个R7元件的1.6 kb ZmEBE-2上游序列能够将基底胚乳中的表达赋予Gus报告基因。这些数据表明,ZmEBE可能参与了胚乳专门结构域的早期开发,并且这一过程可能已经在胚乳起源的中央细胞中启动。

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