Zürich-Basel Plant Science Center, Department of Plant and Microbial Biology, University of Zürich, 8008 Zürich, Switzerland.
Plant Biology, Department of Biology, University of Fribourg, 1700 Fribourg, Switzerland.
Science. 2016 Sep 2;353(6303):1027-1030. doi: 10.1126/science.aaf7254. Epub 2016 Sep 1.
Morphogenetic signals control the patterning of multicellular organisms. Cytokinins are mobile signals that are perceived by subsets of plant cells. We found that the responses to cytokinin signaling during Arabidopsis development are constrained by the transporter PURINE PERMEASE 14 (PUP14). In our experiments, the expression of PUP14 was inversely correlated to the cytokinin signaling readout. Loss of PUP14 function allowed ectopic cytokinin signaling accompanied by aberrant morphogenesis in embryos, roots, and the shoot apical meristem. PUP14 protein localized to the plasma membrane and imported bioactive cytokinins, thus depleting apoplastic cytokinin pools and inhibiting perception by plasma membrane-localized cytokinin sensors to create a sink for active ligands. We propose that the spatiotemporal cytokinin sink patterns established by PUP14 determine the cytokinin signaling landscape that shapes the morphogenesis of land plants.
形态发生信号控制多细胞生物的模式形成。细胞分裂素是可移动的信号,被植物细胞的亚群感知。我们发现,在拟南芥发育过程中,细胞分裂素信号的反应受到转运蛋白嘌呤 permease 14(PUP14)的限制。在我们的实验中,PUP14 的表达与细胞分裂素信号的读出呈负相关。PUP14 功能丧失导致异位细胞分裂素信号伴随着胚胎、根和茎尖分生组织的异常形态发生。PUP14 蛋白定位于质膜,并输入生物活性细胞分裂素,从而耗尽质外体细胞分裂素库,并抑制质膜定位的细胞分裂素传感器的感知,以创建活性配体的汇。我们提出,由 PUP14 建立的时空细胞分裂素汇模式决定了细胞分裂素信号景观,从而塑造了陆地植物的形态发生。