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GEX3 在拟南芥的雄配子体和卵细胞中表达,对于引导花粉管进入珠孔是必需的,并在早期胚胎发生过程中发挥作用。

GEX3, expressed in the male gametophyte and in the egg cell of Arabidopsis thaliana, is essential for micropylar pollen tube guidance and plays a role during early embryogenesis.

机构信息

Department of Plant and Microbial Biology, USDA/ARS-UC-Berkeley, Albany, CA 94710, USA.

出版信息

Mol Plant. 2008 Jul;1(4):586-98. doi: 10.1093/mp/ssn015. Epub 2008 May 25.

Abstract

Double fertilization in flowering plants occurs when the two sperm cells, carried by the pollen tube, are released in a synergid cell of the embryo sac and then fertilize the egg and the central cell. Proteins on the surfaces of the sperm, egg, central, and synergid cells might be important for guidance and recognition/fusion of the gametes. Here, we present functional analyses of Arabidopsis GEX3, which encodes a plasma membrane-localized protein that has homologs in other plants. GEX3 is expressed in both the vegetative and sperm cells of the male gametophyte and in the egg cell of the female gametophyte. Transgenic lines in which GEX3 was down-regulated or overexpressed, using the Arabidopsis GEX2 promoter, had reduced seed set. Reciprocal crosses and imaging after pollination with a reporter line showed that, in both cases, the defect causing reduced seed set occurred in the female. In the antisense lines, micropylar pollen tube guidance failed. In the overexpression lines, fertilization of mutant ovules was mostly blocked because pollen tube guidance failed, although, occasionally, non-viable embryos were formed. We conclude that properly regulated expression of GEX3 in the egg cell of Arabidopsis is essential for pollen tube guidance.

摘要

在开花植物中,双受精发生在两个精子细胞被花粉管释放到胚囊的助细胞中,然后分别使卵子和中央细胞受精时。精子、卵子、中央细胞和助细胞表面的蛋白质可能对配子的导向和识别/融合很重要。在这里,我们介绍了拟南芥 GEX3 的功能分析,GEX3 编码一种定位于质膜的蛋白质,在其他植物中有同源物。GEX3 在雄性配子体的营养细胞和精子细胞以及雌性配子体的卵子细胞中表达。使用拟南芥 GEX2 启动子下调或过表达 GEX3 的转基因系种子产量降低。回交和授粉后的成像显示,在这两种情况下,导致种子产量降低的缺陷都发生在雌性中。在反义系中,花粉管引导失败。在过表达系中,由于花粉管引导失败,突变体胚珠的受精大多被阻断,尽管偶尔也会形成非存活的胚胎。我们得出结论,GEX3 在拟南芥卵子细胞中的适当调控表达对于花粉管引导至关重要。

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