Capron Arnaud, Gourgues Mathieu, Neiva Lissiene S, Faure Jean-Emmanuel, Berger Frederic, Pagnussat Gabriela, Krishnan Anjali, Alvarez-Mejia Cesar, Vielle-Calzada Jean-Philippe, Lee Yuh-Ru, Liu Bo, Sundaresan Venkatesan
Department of Plant Biology, University of California, Davis, California 95616, USA.
Plant Cell. 2008 Nov;20(11):3038-49. doi: 10.1105/tpc.108.061713. Epub 2008 Nov 21.
In Angiosperms, the male gametes are delivered to the female gametes through the maternal reproductive tissue by the pollen tube. Upon arrival, the pollen tube releases the two sperm cells, permitting double fertilization to take place. Although the critical role of the female gametophyte in pollen tube reception has been demonstrated, the underlying mechanisms remain poorly understood. Here, we describe lorelei, an Arabidopsis thaliana mutant impaired in sperm cell release, reminiscent of the feronia/sirène mutant. Pollen tubes reaching lorelei embryo sacs frequently do not rupture but continue to grow in the embryo sac. Furthermore, lorelei embryo sacs continue to attract additional pollen tubes after arrival of the initial pollen tube. The LORELEI gene is expressed in the synergid cells prior to fertilization and encodes a small plant-specific putative glucosylphosphatidylinositol-anchored protein (GAP). These results provide support for the concept of signaling mechanisms at the synergid cell membrane by which the female gametophyte recognizes the arrival of a compatible pollen tube and promotes sperm release. Although GAPs have previously been shown to play critical roles in initiation of fertilization in mammals, flowering plants appear to have independently evolved reproductive mechanisms that use the unique features of these proteins within a similar biological context.
在被子植物中,雄配子通过花粉管经母体生殖组织传递给雌配子。到达后,花粉管释放两个精细胞,从而实现双受精。尽管雌配子体在花粉管接受过程中的关键作用已得到证实,但其潜在机制仍知之甚少。在此,我们描述了拟南芥突变体lorelei,它在精细胞释放方面存在缺陷,类似于feronia/sirène突变体。到达lorelei胚囊的花粉管常常不破裂,而是在胚囊中继续生长。此外,lorelei胚囊在最初的花粉管到达后仍会继续吸引更多的花粉管。LORELEI基因在受精前的助细胞中表达,编码一种小型植物特异性的假定糖基磷脂酰肌醇锚定蛋白(GAP)。这些结果为助细胞膜上的信号传导机制概念提供了支持,通过该机制雌配子体识别兼容花粉管的到来并促进精子释放。尽管此前已证明GAP在哺乳动物受精起始中起关键作用,但开花植物似乎独立进化出了生殖机制,在类似的生物学背景下利用这些蛋白质的独特特性。