Horticultural Biology and Metabolomics Center, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, Fujian, 350002, China.
Department of Botany and Plant Sciences, Institute of Integrated Genome Biology, University of California, Riverside, CA, 92521, USA.
Nat Commun. 2017 Nov 22;8(1):1687. doi: 10.1038/s41467-017-01452-0.
Many tip-growing cells are capable of responding to guidance cues, during which cells precisely steer their growth toward the source of guidance signals. Though several players in signal perception have been identified, little is known about the downstream signaling that controls growth direction during guidance. Here, using combined modeling and experimental studies, we demonstrate that the growth guidance of Arabidopsis pollen tubes is regulated by the signaling network that controls tip growth. Tip-localized exocytosis plays a key role in this network by integrating guidance signals with the ROP1 Rho GTPase signaling and coordinating intracellular signaling with cell wall mechanics. This model reproduces the high robustness and responsiveness of pollen tube guidance and explains the connection between guidance efficiency and the parameters of the tip growth system. Hence, our findings establish an exocytosis-coordinated mechanism underlying the cellular pathfinding guided by signal gradients and the mechanistic linkage between tip growth and guidance.
许多顶端生长的细胞能够对导向信号做出响应,在此过程中,细胞能够精确地将生长方向转向导向信号的来源。尽管已经鉴定出了几个信号感知中的参与者,但对于控制导向过程中生长方向的下游信号传导知之甚少。在这里,我们通过结合建模和实验研究,证明了拟南芥花粉管的生长导向受控制顶端生长的信号网络调控。局部胞吐作用在该网络中起着关键作用,它将导向信号与 ROP1 Rho GTPase 信号整合在一起,并协调细胞内信号与细胞壁力学。该模型再现了花粉管导向的高稳健性和高响应性,并解释了导向效率与尖端生长系统参数之间的联系。因此,我们的发现建立了一个受信号梯度引导的细胞趋性的胞吐协调机制,以及尖端生长和导向之间的机械联系。