Yamashino Takafumi, Kitayama Miki, Mizuno Takeshi
Laboratory of Molecular and Functional Genomics, School of Agriculture, Nagoya University.
Biosci Biotechnol Biochem. 2013;77(12):2454-60. doi: 10.1271/bbb.130559. Epub 2013 Dec 7.
Plant elongation growth on a day-to-day basis is enhanced under specific photoperiod and temperature conditions. Circadian clock is involved in the temperature adaptive photoperiodic control of plant architecture, including hypocotyl elongation in Arabidopsis thaliana. In this regulation, phytochrome interacting transcriptional factors, PIF4 and PIF5, are activated at the end of night under short photoperiod or high temperature conditions, due to the coincidence between internal (circadian rhythm of the transcripts) and external (length of dark period) time cues. It is previously found that biosynthesis or metabolism of phytohormones including auxin, and their signal transduction-related genes are downstream targets of circadian clock and PIF4/PIF5 mediated external coincidence mechanism. Brassinosteroid and gibberellic acid played a positive role in the hypocotyl elongation of seedlings under light and dark cycle conditions. On the other hand, cytokinin and jasmonic acid played an opposite role. In this study, diurnal expression profile of a gene encoding a sulfotransferase family protein that is involved in the jasmonic acid metabolism, ST2A, was examined. It was found that transcription of ST2A is induced at the end of night under LD/22 °C and SD/28 °C conditions according to the external coincidence mechanism. The results of this study support the idea that the circadian clock orchestrates a variety of hormone-signaling pathways to regulate the photoperiod and temperature-dependent morphogenesis in A. thaliana.
在特定的光周期和温度条件下,植物的日常伸长生长会增强。生物钟参与植物形态的温度适应性光周期调控,包括拟南芥下胚轴的伸长。在这种调控中,由于内部(转录本的昼夜节律)和外部(暗期长度)时间线索的重合,光敏色素相互作用转录因子PIF4和PIF5在短光周期或高温条件下的夜晚结束时被激活。先前发现,包括生长素在内的植物激素的生物合成或代谢及其信号转导相关基因是生物钟和PIF4/PIF5介导的外部重合机制的下游靶点。油菜素内酯和赤霉素在光暗周期条件下对幼苗下胚轴伸长起积极作用。另一方面,细胞分裂素和茉莉酸则起相反作用。在本研究中,检测了一个参与茉莉酸代谢的磺基转移酶家族蛋白编码基因ST2A的昼夜表达谱。发现根据外部重合机制,ST2A的转录在长日照/22℃和短日照/28℃条件下的夜晚结束时被诱导。本研究结果支持生物钟协调多种激素信号通路以调节拟南芥光周期和温度依赖性形态发生的观点。