Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan; Department of Life Sciences, National Central University, Jhongli City, Taiwan.
Plant Biotechnol J. 2015 Jan;13(1):105-16. doi: 10.1111/pbi.12241. Epub 2014 Sep 9.
Regulation of root architecture is essential for maintaining plant growth under adverse environment. A synthetic abscisic acid (ABA)/stress-inducible promoter was designed to control the expression of a late embryogenesis abundant protein (HVA1) in transgenic rice. The background of HVA1 is low but highly inducible by ABA, salt, dehydration and cold. HVA1 was highly accumulated in root apical meristem (RAM) and lateral root primordia (LRP) after ABA/stress treatments, leading to enhanced root system expansion. Water-use efficiency (WUE) and biomass also increased in transgenic rice, likely due to the maintenance of normal cell functions and metabolic activities conferred by HVA1 which is capable of stabilizing proteins, under osmotic stress. HVA1 promotes lateral root (LR) initiation, elongation and emergence and primary root (PR) elongation via an auxin-dependent process, particularly by intensifying asymmetrical accumulation of auxin in LRP founder cells and RAM, even under ABA/stress-suppressive conditions. We demonstrate a successful application of an inducible promoter in regulating the spatial and temporal expression of HVA1 for improving root architecture and multiple stress tolerance without yield penalty.
调控根系结构对于维持植物在逆境下的生长至关重要。本研究设计了一种合成的脱落酸(ABA)/胁迫诱导启动子,用于控制转基因水稻中晚期胚胎丰富蛋白(HVA1)的表达。HVA1 的背景水平较低,但对 ABA、盐、干旱和寒冷高度诱导。ABA/胁迫处理后,HVA1 在根顶端分生组织(RAM)和侧根原基(LRP)中高度积累,导致根系扩张增强。转基因水稻的水分利用效率(WUE)和生物量也增加,这可能是由于 HVA1 能够稳定蛋白质,在渗透胁迫下维持正常的细胞功能和代谢活性。HVA1 通过生长素依赖的过程促进侧根(LR)的起始、伸长和出现以及主根(PR)的伸长,特别是通过在 LRP 起始细胞和 RAM 中加强生长素的不对称积累,即使在 ABA/胁迫抑制条件下也是如此。我们成功地应用诱导型启动子来调控 HVA1 的时空表达,以改善根系结构和多种胁迫耐受性,而不会降低产量。