Division of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8602, Japan.
JST ERATO Higashiyama Live-Holonics Project, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8602, Japan.
Nature. 2016 Mar 10;531(7593):245-8. doi: 10.1038/nature17413.
Directional control of tip-growing cells is essential for proper tissue organization and cell-to-cell communication in animals and plants. In the sexual reproduction of flowering plants, the tip growth of the male gametophyte, the pollen tube, is precisely guided by female cues to achieve fertilization. Several female-secreted peptides have recently been identified as species-specific attractants that directly control the direction of pollen tube growth. However, the method by which pollen tubes precisely and promptly respond to the guidance signal from their own species is unknown. Here we show that tip-localized pollen-specific receptor-like kinase 6 (PRK6) with an extracellular leucine-rich repeat domain is an essential receptor for sensing of the LURE1 attractant peptide in Arabidopsis thaliana under semi-in-vivo conditions, and is important for ovule targeting in the pistil. PRK6 interacted with pollen-expressed ROPGEFs (Rho of plant guanine nucleotide-exchange factors), which are important for pollen tube growth through activation of the signalling switch Rho GTPase ROP1 (refs 7, 8). PRK6 conferred responsiveness to AtLURE1 in pollen tubes of the related species Capsella rubella. Furthermore, our genetic and physiological data suggest that PRK6 signalling through ROPGEFs and sensing of AtLURE1 are achieved in cooperation with the other PRK family receptors, PRK1, PRK3 and PRK8. Notably, the tip-focused PRK6 accumulated asymmetrically towards an external AtLURE1 source before reorientation of pollen tube tip growth. These results demonstrate that PRK6 acts as a key membrane receptor for external AtLURE1 attractants, and recruits the core tip-growth machinery, including ROP signalling proteins. This work provides insights into the orchestration of efficient pollen tube growth and species-specific pollen tube attraction by multiple receptors during male-female communication.
顶端生长细胞的定向控制对于动植物组织的正常发育和细胞间通讯至关重要。在开花植物的有性生殖中,雄性配子体——花粉管的顶端生长被雌性信号精确引导,以实现受精。最近发现了几种雌性分泌的肽类物质,它们是物种特异性的引诱剂,可以直接控制花粉管的生长方向。然而,花粉管如何精确和及时地对来自自身物种的导向信号做出反应,目前尚不清楚。在这里,我们证明了定位于花粉顶端的类受体激酶 6(PRK6)具有一个富含亮氨酸的细胞外重复结构域,是拟南芥中感知 LURE1 引诱肽的必需受体,在柱头中对胚珠的靶向也很重要。PRK6 与花粉表达的 ROPGEFs(植物鸟嘌呤核苷酸交换因子的 Rho)相互作用,对于通过激活信号开关 Rho GTPase ROP1 来促进花粉管生长非常重要(参考文献 7,8)。PRK6 使相关种拟南芥 Capsella rubella 的花粉管对 AtLURE1 产生了反应性。此外,我们的遗传和生理数据表明,PRK6 通过 ROPGEFs 的信号转导和对 AtLURE1 的感知,与其他 PRK 家族受体 PRK1、PRK3 和 PRK8 共同作用来实现。值得注意的是,PRK6 在花粉管尖端生长重新定向之前,不对称地向外部 AtLURE1 源积累。这些结果表明,PRK6 作为外部 AtLURE1 引诱剂的关键膜受体,募集了包括 ROP 信号蛋白在内的核心顶端生长机械。这项工作为在雌雄配子体通讯过程中,多个受体如何协调有效的花粉管生长和物种特异性花粉管吸引提供了新的见解。