Department of Molecular Signal Processing, Leibniz Institute of Plant Biochemistry, Weinberg 3, 06120 Halle (Saale), Germany.
Department of Cell and Metabolic Biology, Leibniz Institute of Plant Biochemistry, 06120 Halle (Saale), Germany.
Mol Plant. 2019 Oct 7;12(10):1383-1394. doi: 10.1016/j.molp.2019.05.013. Epub 2019 Jun 8.
Multicellular organisms rely on the movement of signaling molecules across cells, tissues, and organs to communicate among distal sites. In plants, localized leaf damage activates jasmonic acid (JA)-dependent transcriptional reprogramming in both harmed and unharmed tissues. Although it has been indicated that JA species can translocate from damaged into distal sites, the identity of the mobile compound(s), the tissues through which they translocate, and the effect of their relocation remain unknown. Here, we found that following shoot wounding, the relocation of endogenous jasmonates through the phloem is essential to initiate JA signaling and stunt growth in unharmed roots of Arabidopsis thaliana. By employing grafting experiments and hormone profiling, we uncovered that the hormone precursor cis-12-oxo-phytodienoic acid (OPDA) and its derivatives, but not the bioactive JA-Ile conjugate, translocate from wounded shoots into undamaged roots. Upon root relocation, the mobile precursors cooperatively regulated JA responses through their conversion into JA-Ile and JA signaling activation. Collectively, our findings demonstrate the existence of long-distance translocation of endogenous OPDA and its derivatives, which serve as mobile molecules to coordinate shoot-to-root responses, and highlight the importance of a controlled redistribution of hormone precursors among organs during plant stress acclimation.
多细胞生物依赖于信号分子在细胞、组织和器官间的跨细胞运动来进行远程通讯。在植物中,局部叶片损伤会激活受损伤和未受损伤组织中依赖茉莉酸(JA)的转录重编程。虽然已经表明 JA 物种可以从受损部位转移到远处部位,但可移动的化合物的身份、它们转移通过的组织以及它们重新定位的效果仍然未知。在这里,我们发现,在茎部受伤后,内源性茉莉酸盐通过韧皮部的重新分配对于启动拟南芥未受损根系中的 JA 信号和生长抑制是必不可少的。通过嫁接实验和激素分析,我们发现激素前体顺式-12-氧-植烷二烯酸(OPDA)及其衍生物,而不是生物活性的 JA-Ile 缀合物,从受伤的茎部转移到未受损的根部。在根部重新分配后,移动前体通过转化为 JA-Ile 和 JA 信号激活来共同调节 JA 反应。总的来说,我们的发现表明内源 OPDA 及其衍生物的长距离转移的存在,它们作为移动分子来协调地上部和地下部的反应,并强调了在植物应激适应过程中激素前体在器官间的受控再分配的重要性。