Jiang Lixi, Yang Shu-Lan, Xie Li-Fen, Puah Ching San, Zhang Xue-Qin, Yang Wei-Cai, Sundaresan Venkatesan, Ye De
Institute of Molecular and Cell Biology, Singapore 138673.
Plant Cell. 2005 Feb;17(2):584-96. doi: 10.1105/tpc.104.027631. Epub 2005 Jan 19.
In flowering plants, penetration of the pollen tube through stigma, style, and transmitting tract is essential for delivery of sperm nuclei to the egg cells embedded deeply within female tissues. Despite its importance in plant reproduction, little is known about the underlying molecular mechanisms that regulate the navigation of the pollen tube through the stigma, style, and transmitting tract. Here, we report the identification and characterization of an Arabidopsis thaliana gene, VANGUARD1 (VGD1) that encodes a pectin methylesterase (PME)-homologous protein of 595 amino acids and is required for enhancing the growth of pollen tubes in the style and transmitting tract tissues. VGD1 was expressed specifically in pollen grain and the pollen tube. The VGD1 protein was distributed throughout the pollen grain and pollen tube, including the plasma membrane and cell wall. Functional interruption of VGD1 reduced PME activity in the pollen to 82% of the wild type and greatly retarded the growth of the pollen tube in the style and transmitting tract, resulting in a significant reduction of male fertility. In addition, the vgd1 pollen tubes were unstable and burst more frequently when germinated and grown on in vitro culture medium, compared with wild-type pollen tubes. Our study suggests that the VGD1 product is required for growth of the pollen tube, possibly via modifying the cell wall and enhancing the interaction of the pollen tube with the female style and transmitting tract tissues.
在开花植物中,花粉管穿透柱头、花柱和传递组织对于将精核传递到深埋于雌蕊组织中的卵细胞至关重要。尽管其在植物繁殖中具有重要意义,但对于调控花粉管在柱头、花柱和传递组织中导航的潜在分子机制却知之甚少。在此,我们报告了拟南芥基因VANGUARD1(VGD1)的鉴定与特征,该基因编码一个含有595个氨基酸的果胶甲酯酶(PME)同源蛋白,是增强花粉管在花柱和传递组织中生长所必需的。VGD1在花粉粒和花粉管中特异性表达。VGD1蛋白分布于整个花粉粒和花粉管,包括质膜和细胞壁。VGD1功能的中断使花粉中的PME活性降至野生型的82%,并极大地阻碍了花粉管在花柱和传递组织中的生长,导致雄性育性显著降低。此外,与野生型花粉管相比,vgd1花粉管在体外培养基上萌发和生长时不稳定且更频繁地破裂。我们的研究表明,VGD1产物可能通过修饰细胞壁并增强花粉管与雌蕊花柱和传递组织之间的相互作用来促进花粉管的生长。