Xuan Yuan Hu, Duan Feng Ying, Je Byoung Il, Kim Chul Min, Li Tian Ya, Liu Jing Miao, Park Soon Ju, Cho Jun Hyeon, Kim Tae Ho, von Wiren Nicolaus, Han Chang-Deok
College of Plant Protection, Shenyang Agricultural University, Dongling Road, Shenyang, China.
Division of Applied Life Science (BK21 Program), Plant Molecular Biology and Biotechnology Research Center (PMBBRC), Gyeongsang National University, Jinju, Korea.
J Exp Bot. 2017 Jan 1;68(3):727-737. doi: 10.1093/jxb/erw442.
The promotive effects of brassinosteroids (BRs) on plant growth and development have been widely investigated; however, it is not known whether BRs directly affect nutrient uptake. Here, we explored the possibility of a direct relationship between BRs and ammonium uptake via AMT1-type genes in rice (Oryza sativa). BR treatment increased the expression of AMT1;1 and AMT1;2, whereas in the mutant d61-1, which is defective in the BR-receptor gene BRI1, BR-dependent expression of these genes was suppressed. We then employed Related to ABI3/VP1-Like 1 (RAVL1), which is involved in BR homeostasis, to investigate BR-mediated AMT1 expression and its effect on NH4+ uptake in rice roots. AMT1;2 expression was lower in the ravl1 mutant, but higher in the RAVL1-overexpressing lines. EMSA and ChIP analyses showed that RAVL1 activates the expression of AMT1;2 by directly binding to E-box motifs in its promoter. Moreover, 15NH4+ uptake, cellular ammonium contents, and root responses to methyl-ammonium strongly depended on RAVL1 levels. Analysing AMT1;2 expression levels in different crosses between BRI1 and RAVL1 mutant and overexpression lines indicated that RAVL1 acts downstream of BRI1 in the regulation of AMT1;2. Thus, the present study shows how BRs may be involved in the transcriptional regulation of nutrient transporters to modulate their uptake capacity.
油菜素甾醇(BRs)对植物生长发育的促进作用已得到广泛研究;然而,BRs是否直接影响养分吸收尚不清楚。在此,我们探讨了BRs与水稻(Oryza sativa)中通过AMT1型基因吸收铵之间存在直接关系的可能性。BR处理增加了AMT1;1和AMT1;2的表达,而在BR受体基因BRI1有缺陷的突变体d61-1中,这些基因的BR依赖性表达受到抑制。然后,我们利用参与BR稳态的ABI3/VP1样相关蛋白1(RAVL1)来研究BR介导的AMT1表达及其对水稻根中NH4+吸收的影响。在ravl1突变体中AMT1;2表达较低,但在RAVL1过表达系中较高。电泳迁移率变动分析(EMSA)和染色质免疫沉淀(ChIP)分析表明,RAVL1通过直接结合其启动子中的E-box基序来激活AMT1;2的表达。此外,15NH4+吸收、细胞铵含量以及根对甲基铵的反应强烈依赖于RAVL1水平。分析BRI1和RAVL1突变体与过表达系之间不同杂交组合中的AMT1;2表达水平表明,RAVL1在AMT1;2的调控中作用于BRI1的下游。因此,本研究揭示了BRs可能如何参与营养转运蛋白的转录调控以调节其吸收能力。