Department of Chemistry, Seoul National University, Seoul, 08826, Korea.
Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon, 34141, Korea.
Plant J. 2018 Jun;94(5):790-798. doi: 10.1111/tpj.13902. Epub 2018 Apr 17.
Underground roots normally reside in darkness. However, they are often exposed to ambient light that penetrates through cracks in the soil layers which can occur due to wind, heavy rain or temperature extremes. In response to light exposure, roots produce reactive oxygen species (ROS) which promote root growth. It is known that ROS-induced growth promotion facilitates rapid escape of the roots from non-natural light. Meanwhile, long-term exposure of the roots to light elicits a ROS burst, which causes oxidative damage to cellular components, necessitating that cellular levels of ROS should be tightly regulated in the roots. Here we demonstrate that the red/far-red light photoreceptor phytochrome B (phyB) stimulates the biosynthesis of abscisic acid (ABA) in the shoots, and notably the shoot-derived ABA signals induce a peroxidase-mediated ROS detoxification reaction in the roots. Accordingly, while ROS accumulate in the roots of the phyb mutant that exhibits reduced primary root growth in the light, such an accumulation of ROS did not occur in the dark-grown phyb roots that exhibited normal growth. These observations indicate that mobile shoot-to-root ABA signaling links shoot phyB-mediated light perception with root ROS homeostasis to help roots adapt to unfavorable light exposure. We propose that ABA-mediated shoot-to-root phyB signaling contributes to the synchronization of shoot and root growth for optimal propagation and performance in plants.
地下根通常生活在黑暗中。然而,它们经常暴露在环境光下,这些光可以穿透土壤层的裂缝进入,这些裂缝可能是由于风、大雨或极端温度造成的。为了应对光照,根会产生活性氧(ROS),从而促进根的生长。已知 ROS 诱导的生长促进作用有助于根迅速逃离非自然光。同时,根长期暴露在光线下会引发 ROS 爆发,从而对细胞成分造成氧化损伤,因此需要在根中严格调节 ROS 的细胞水平。在这里,我们证明红光/远红光光受体光敏色素 B(phyB)刺激了 shoot 中脱落酸(ABA)的生物合成,值得注意的是,shoot 衍生的 ABA 信号在根中诱导了过氧化物酶介导的 ROS 解毒反应。因此,当表现出光下初级根生长减少的 phyb 突变体根中 ROS 积累时,在黑暗中生长的 phyb 根中没有发生这种 ROS 积累,而黑暗中生长的 phyb 根表现出正常生长。这些观察结果表明,可移动的 shoot-to-root ABA 信号将 shoot phyB 介导的光感知与根 ROS 动态平衡联系起来,帮助根适应不利的光照。我们提出,ABA 介导的 shoot-to-root phyB 信号有助于实现 shoot 和根生长的同步,从而优化植物的繁殖和表现。