State Key Laboratory for Protein and Plant Gene Research, Peking-Tsinghua Center for Life Sciences at the College of Life Sciences, Peking University, Beijing 100871, People's Republic of China.
Cell Biology and Plant Biochemistry, University of Regensburg, 93053 Regensburg, Germany.
Plant Physiol. 2021 Jun 11;186(2):865-873. doi: 10.1093/plphys/kiab105.
Reproductive isolation is a prerequisite to form and maintain a new species. Multiple prezygotic and postzygotic reproductive isolation barriers have been reported in plants. In the model plant, Arabidopsis thaliana conspecific pollen tube precedence controlled by AtLURE1/PRK6-mediated signaling has been recently reported as a major prezygotic reproductive isolation barrier. By accelerating emergence of own pollen tubes from the transmitting tract, A. thaliana ovules promote self-fertilization and thus prevent fertilization by a different species. Taking advantage of a septuple atlure1null mutant, we now report on the role of AtLURE1/PRK6-mediated signaling for micropylar pollen tube guidance. Compared with wild-type (WT) ovules, atlure1null ovules displayed remarkably reduced micropylar pollen tube attraction efficiencies in modified semi-in vivo A. thaliana ovule targeting assays. However, when prk6 mutant pollen tubes were applied, atlure1null ovules showed micropylar attraction efficiencies comparable to that of WT ovules. These findings indicate that AtLURE1/PRK6-mediated signaling regulates micropylar pollen tube attraction in addition to promoting emergence of own pollen tubes from the transmitting tract. Moreover, semi-in vivo ovule targeting competition assays with the same amount of pollen grains from both A. thaliana and Arabidopsis lyrata showed that A. thaliana WT and xiuqiu mutant ovules are mainly targeted by own pollen tubes and that atlure1null mutant ovules are also entered to a large extent by A. lyrata pollen tubes. Taken together, we report that AtLURE1/PRK6-mediated signaling promotes conspecific micropylar pollen tube attraction representing an additional prezygotic isolation barrier.
生殖隔离是形成和维持新物种的前提。在植物中,已经报道了多种合子前和合子后生殖隔离障碍。在模式植物拟南芥中,最近报道了 AtLURE1/PRK6 介导的信号转导控制同种花粉管优先的现象,这是一种主要的合子前生殖隔离障碍。拟南芥的胚珠通过加速自身花粉管从传递道中出现,促进自花受精,从而防止与不同物种的受精。利用一个七倍 Atlure1 突变体,我们现在报告了 AtLURE1/PRK6 介导的信号转导对珠孔花粉管导向的作用。与野生型(WT)胚珠相比,atlure1null 胚珠在改良的半活体拟南芥胚珠靶向测定中表现出明显降低的珠孔花粉管吸引效率。然而,当施用 prk6 突变花粉管时,atlure1null 胚珠显示出与 WT 胚珠相当的珠孔吸引效率。这些发现表明,AtLURE1/PRK6 介导的信号转导调节珠孔花粉管的吸引,除了促进自身花粉管从传递道中出现。此外,用来自拟南芥和拟南芥的花粉粒进行相同数量的半活体胚珠靶向竞争测定,表明拟南芥 WT 和 xiuqiu 突变体胚珠主要被自身花粉管靶向,而 atlure1null 突变体胚珠也在很大程度上被拟南芥花粉管靶向。总之,我们报告说,AtLURE1/PRK6 介导的信号转导促进同种花粉管在珠孔的吸引,这代表了另一个合子前隔离障碍。