Jiang Caifu, Gao Xiuhua, Liao Lili, Harberd Nicholas P, Fu Xiangdong
State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, National Centre for Plant Gene Research, Beijing 100101, China.
Plant Physiol. 2007 Dec;145(4):1460-70. doi: 10.1104/pp.107.103788. Epub 2007 Oct 11.
Phosphate (Pi) is a macronutrient that is essential for plant growth and development. However, the low mobility of Pi impedes uptake, thus reducing availability. Accordingly, plants have developed physiological strategies to cope with low Pi availability. Here, we report that the characteristic Arabidopsis thaliana Pi starvation responses are in part dependent on the activity of the nuclear growth-repressing DELLA proteins (DELLAs), core components of the gibberellin (GA)-signaling pathway. We first show that multiple shoot and root Pi starvation responses can be repressed by exogenous GA or by mutations conferring a substantial reduction in DELLA function. In contrast, mutants having enhanced DELLA function exhibit enhanced Pi starvation responses. We also show that Pi deficiency promotes the accumulation of a green fluorescent protein-tagged DELLA (GFP-RGA [repressor of ga1-3]) in root cell nuclei. In further experiments, we show that Pi starvation causes a decrease in the level of bioactive GA and associated changes in the levels of gene transcripts encoding enzymes of GA metabolism. Finally, we show that the GA-DELLA system regulates the increased root hair length that is characteristic of Pi starvation. In conclusion, our results indicate that DELLA-mediated signaling contributes to the anthocyanin accumulation and root architecture changes characteristic of Pi starvation responses, but do not regulate Pi starvation-induced changes in Pi uptake efficiency or the accumulation of selected Pi starvation-responsive gene transcripts. Pi starvation causes a reduction in bioactive GA level, which, in turn, causes DELLA accumulation, thus modulating several adaptively significant plant Pi starvation responses.
磷酸盐(Pi)是一种对植物生长和发育至关重要的大量营养素。然而,Pi的低移动性阻碍了其吸收,从而降低了有效性。因此,植物已经发展出应对低Pi有效性的生理策略。在此,我们报告拟南芥特有的Pi饥饿反应部分依赖于核生长抑制DELLA蛋白(DELLAs)的活性,DELLAs是赤霉素(GA)信号通路的核心成分。我们首先表明,多种地上部和根部的Pi饥饿反应可被外源GA或导致DELLA功能大幅降低的突变所抑制。相反,具有增强DELLA功能的突变体表现出增强的Pi饥饿反应。我们还表明,Pi缺乏促进根细胞核中绿色荧光蛋白标记的DELLA(GFP-RGA [ga1-3的阻遏物])的积累。在进一步的实验中,我们表明Pi饥饿导致生物活性GA水平降低以及GA代谢相关基因转录本水平的变化。最后,我们表明GA-DELLA系统调节Pi饥饿特有的根毛长度增加。总之,我们的结果表明,DELLA介导的信号传导有助于Pi饥饿反应特有的花青素积累和根系结构变化,但不调节Pi饥饿诱导的Pi吸收效率变化或所选Pi饥饿反应相关基因转录本的积累。Pi饥饿导致生物活性GA水平降低,进而导致DELLA积累,从而调节几种具有适应性意义的植物Pi饥饿反应。