Xu Jian, Hofhuis Hugo, Heidstra Renze, Sauer Michael, Friml Jirí, Scheres Ben
Department of Molecular Genetics, Utrecht University, Padualaan 8, 3584CH Utrecht, Netherlands.
Science. 2006 Jan 20;311(5759):385-8. doi: 10.1126/science.1121790.
Plants and some animals have a profound capacity to regenerate organs from adult tissues. Molecular mechanisms for regeneration have, however, been largely unexplored. Here we investigate a local regeneration response in Arabidopsis roots. Laser-induced wounding disrupts the flow of auxin-a cell-fate-instructive plant hormone-in root tips, and we demonstrate that resulting cell-fate changes require the PLETHORA, SHORTROOT, and SCARECROW transcription factors. These transcription factors regulate the expression and polar position of PIN auxin efflux-facilitating membrane proteins to reconstitute auxin transport in renewed root tips. Thus, a regeneration mechanism using embryonic root stem-cell patterning factors first responds to and subsequently stabilizes a new hormone distribution.
植物和一些动物具有从成体组织再生器官的强大能力。然而,再生的分子机制在很大程度上尚未得到探索。在此,我们研究拟南芥根中的局部再生反应。激光诱导的创伤会破坏生长素(一种决定细胞命运的植物激素)在根尖中的流动,并且我们证明由此产生的细胞命运变化需要多能性因子、短根和 scarecrow 转录因子。这些转录因子调节 PIN 生长素外排促进膜蛋白的表达和极性位置,以在再生的根尖中重新构建生长素运输。因此,一种利用胚胎根干细胞模式因子的再生机制首先对新的激素分布做出反应,随后使其稳定下来。