School of Biological Science and Technology, University of Jinan, Jinan, China.
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an, China.
Plant Cell Environ. 2019 Dec;42(12):3280-3292. doi: 10.1111/pce.13630. Epub 2019 Aug 12.
Light is a key limiting factor of plant growth and development under the canopy. Specific light signals, such as a low ratio of red : far-red (R:FR) light, trigger the shade avoidance response, which affects hypocotyl, stem, and leaf growth. Although multiple components mediating shade avoidance responses have been identified in the past few decades, the underlying regulatory mechanism remains unclear. In this study, we found that the far-red elongated hypocotyls 3 (fhy3) mutant exhibited longer hypocotyls and increased expression levels of core shade avoidance response genes under low R:FR shade conditions compared with the wild type No-0, suggesting that FHY3 negatively regulates shade avoidance responses. Yeast one-hybrid, chromatin immunoprecipitation, and RT-qPCR assays revealed that FHY3 directly binds to the promoters and gene body of PHYTOCHROME RAPIDLY REGULATED1 (PAR1) and PAR2 and activates their expression to inhibit shade responses. Furthermore, the overexpression of PAR1 or PAR2 rescued the enhanced shade avoidance responses of fhy3, indicating that both genes are direct downstream targets of FHY3 that mediate shade avoidance responses. Our findings demonstrate that the light-signalling protein FHY3 positively regulates the transcription of PAR1 and PAR2, which encode two key negative regulators of shade avoidance responses, thus repressing plant responses to shade signals.
光是冠层下植物生长和发育的关键限制因素。特定的光信号,如低红:远红光(R:FR)比值,触发避荫反应,影响下胚轴、茎和叶的生长。尽管在过去几十年中已经确定了多种介导避荫反应的成分,但潜在的调节机制仍不清楚。在这项研究中,我们发现远红光伸长下胚轴 3(fhy3)突变体在低 R:FR 遮荫条件下表现出较长的下胚轴和核心避荫反应基因表达水平的增加,表明 FHY3 负调控避荫反应。酵母单杂交、染色质免疫沉淀和 RT-qPCR 实验表明,FHY3 直接结合 PHYTOCHROME RAPIDLY REGULATED1(PAR1)和 PAR2 的启动子和基因体,并激活其表达以抑制避荫反应。此外,PAR1 或 PAR2 的过表达挽救了 fhy3 增强的避荫反应,表明这两个基因都是 FHY3 的直接下游靶基因,介导避荫反应。我们的研究结果表明,光信号蛋白 FHY3 正向调控 PAR1 和 PAR2 的转录,这两个基因编码两个避荫反应的关键负调控因子,从而抑制植物对遮荫信号的反应。