Hategan Lidia, Godza Blanka, Kozma-Bognar Laszlo, Bishop Gerard J, Szekeres Miklos
Institute of Plant Biology, Biological Research Centre of the Hungarian Academy of Sciences, 6726, Szeged, Hungary.
Planta. 2014 May;239(5):989-1001. doi: 10.1007/s00425-014-2031-4. Epub 2014 Feb 1.
Brassinosteroid (BR)-regulated growth and development in Arabidopsis depends on BRASSINOSTEROID INSENSITIVE 1 (BRI1), the BR receptor that is responsible for initiating the events of BR signalling. We analysed the temporal and spatial regulation of BRI1 expression using stable transgenic lines that carried BRI1 promoter:reporter fusions. In both seedlings and mature plants the tissues undergoing elongation or differentiation showed elevated BRI1 gene activity, and it could be demonstrated that in the hypocotyl this was accompanied by accumulation of the BRI1 transcript and its receptor protein product. In seedlings the BRI1 promoter was also found to be under diurnal regulation, determined primarily by light repression and a superimposed circadian control. To determine the functional importance of transcriptional regulation we complemented the severely BR insensitive bri1-101 mutant with a BRI1-luciferase fusion construct that was driven by promoters with contrasting specificities. Whereas the BRI1 promoter-driven transgene fully restored the wild phenotype, expression from the photosynthesis-associated CAB3 and the vasculature-specific SUC2 and ATHB8 promoters resulted in plants with varying morphogenic defects. Our results reveal complex differential regulation of BRI1 expression, and suggest that by influencing the distribution and abundance of the receptor this regulation can enhance or attenuate BR signalling.
油菜素甾醇(BR)调控拟南芥的生长发育依赖于油菜素甾醇不敏感1(BRI1),它是负责启动BR信号传导事件的BR受体。我们使用携带BRI1启动子:报告基因融合的稳定转基因系分析了BRI1表达的时空调控。在幼苗和成熟植株中,正在伸长或分化的组织显示出BRI1基因活性升高,并且可以证明在胚轴中这伴随着BRI1转录本及其受体蛋白产物的积累。在幼苗中,还发现BRI1启动子受昼夜节律调控,主要由光抑制和叠加的昼夜节律控制决定。为了确定转录调控的功能重要性,我们用由具有不同特异性的启动子驱动的BRI1-荧光素酶融合构建体补充了严重BR不敏感的bri1-101突变体。虽然由BRI1启动子驱动的转基因完全恢复了野生型表型,但来自与光合作用相关的CAB3以及脉管系统特异性的SUC2和ATHB8启动子的表达导致植物出现不同程度的形态发生缺陷。我们的结果揭示了BRI1表达的复杂差异调控,并表明通过影响受体的分布和丰度,这种调控可以增强或减弱BR信号传导。