School of Plant Sciences, University of Arizona, Tucson, AZ 85721, USA.
Plant J. 2010 May 1;62(4):571-88. doi: 10.1111/j.1365-313X.2010.04177.x. Epub 2010 Feb 16.
In plants, double fertilization requires successful sperm cell delivery into the female gametophyte followed by migration, recognition and fusion of the two sperm cells with two female gametes. We isolated a null allele (lre-5) of LORELEI, which encodes a putative glycosylphosphatidylinositol (GPI)-anchored protein implicated in reception of the pollen tube by the female gametophyte. Although most lre-5 female gametophytes do not allow pollen tube reception, in those that do, early seed development is delayed. A fraction of lre-5/lre-5 seeds underwent abortion due to defect(s) in the female gametophyte. The aborted seeds contained endosperm but no zygote/embryo, reminiscent of autonomous endosperm development in the pollen tube reception mutants scylla and sirene. However, unpollinated lre-5/lre-5 ovules did not initiate autonomous endosperm development and endosperm development in aborted seeds began after central cell fertilization. Thus, the egg cell probably remained unfertilized in aborted lre-5/lre-5 seeds. The lre-5/lre-5 ovules that remain undeveloped due to defective pollen tube reception did not induce synergid degeneration and repulsion of supernumerary pollen tubes. In ovules, LORELEI is expressed during pollen tube reception, double fertilization and early seed development. Null mutants of LORELEI-like-GPI-anchored protein 1 (LLG1), the closest relative of LORELEI among three Arabidopsis LLG genes, are fully fertile and did not enhance reproductive defects in lre-5/lre-5 pistils, suggesting that LLG1 function is not redundant with that of LORELEI in the female gametophyte. Our results show that, besides pollen tube reception, LORELEI also functions during double fertilization and early seed development.
在植物中,双受精需要成功地将精子细胞输送到雌性配子体中,然后两个精子细胞与两个雌性配子体的迁移、识别和融合。我们分离了 LORELEI 的一个无效等位基因(lre-5),该基因编码一种推测的糖基磷脂酰肌醇(GPI)锚定蛋白,该蛋白参与雌性配子体对花粉管的接收。尽管大多数 lre-5 雌性配子体不允许花粉管接收,但在那些允许的情况下,早期种子发育会延迟。由于雌性配子体的缺陷,一部分 lre-5/lre-5 种子发生了流产。流产的种子含有胚乳,但没有受精卵/胚胎,这让人联想到花粉管接收突变体 Scylla 和 Sirene 中自主胚乳发育。然而,未授粉的 lre-5/lre-5 胚珠不会启动自主胚乳发育,而流产种子中的胚乳发育是在中央细胞受精后开始的。因此,在流产的 lre-5/lre-5 种子中,卵子可能仍然未受精。由于花粉管接收缺陷而未发育的 lre-5/lre-5 胚珠不会诱导助细胞退化和排斥多余的花粉管。在胚珠中,LORELEI 在花粉管接收、双受精和早期种子发育过程中表达。LORELEI 三个拟南芥 LLG 基因中最接近的同源物 LORELEI 样 GPI 锚定蛋白 1(LLG1)的无效突变体是完全可育的,并且没有增强 lre-5/lre-5 雌蕊中的生殖缺陷,这表明 LLG1 的功能在雌性配子体中与 LORELEI 不冗余。我们的研究结果表明,LORELEI 除了参与花粉管接收外,还在双受精和早期种子发育过程中发挥作用。