Departamento de Biologia, Faculdade de Ciências da Universidade do Porto, Porto, Portugal.
Biosystems and Integrative Sciences Institute - BioISI, Porto, Portugal.
J Exp Bot. 2019 Jun 1;70(11):2979-2992. doi: 10.1093/jxb/erz087.
The process of plant fertilization provides an outstanding example of refined control of gene expression. During this elegant process, subtle communication occurs between neighboring cells, based on chemical signals, that induces cellular mechanisms of patterning and growth. Having faced an immediate issue of self-incompatibility responses, the pathway to fertilization starts once the stigmatic cells recognize a compatible pollen grain, and it continues with numerous players interacting to affect pollen tube growth and the puzzling process of navigation along the transmitting tract. The pollen tube goes through a guidance process that begins with a preovular stage (i.e. prior to the influence of the target ovule), with interactions with factors from the transmitting tissue. In the subsequent ovular-guidance stage a specific relationship develops between the pollen tube and its target ovule. This stage is divided into the funicular and micropylar guidance steps, with numerous receptors working in signalling cascades. Finally, just after the pollen tube has passed beyond the synergids, fusion of the gametes occurs and the developing seed-the ultimate aim of the process-will start to mature. In this paper, we review the existing knowledge of the crucial biological processes involved in pollen-pistil interactions that give rise to the new seed.
植物受精过程为精细的基因表达调控提供了一个极好的范例。在这个优雅的过程中,基于化学信号,相邻细胞之间会发生微妙的通讯,从而诱导形态发生和生长的细胞机制。受精途径始于柱头细胞识别可亲和的花粉粒,一旦遇到自交不亲和反应的直接问题,就会启动。随后,众多参与者相互作用,影响花粉管的生长和令人困惑的沿导道导航过程。花粉管经历一个导向过程,该过程始于胚珠前阶段(即在靶胚珠影响之前),与来自传输组织的因素相互作用。在随后的胚珠导向阶段,花粉管与其靶胚珠之间会形成特定的关系。该阶段分为丝状和珠孔引导步骤,众多受体在信号级联中发挥作用。最后,就在花粉管穿过助细胞之后,配子融合,发育中的种子——这一过程的最终目标——开始成熟。本文综述了花粉-雌蕊相互作用中涉及的关键生物学过程的现有知识,这些过程导致新种子的形成。