Plant hormone profile and control over isoprene biosynthesis in a tropical tree Ficus septica

生物 转录因子 生长素 茉莉酸 激素 赤霉素 基因 生物钟 细胞生物学 细胞分裂素 植物 生物化学 遗传学
作者
Md. Asif Iqbal,Koji Miyamoto,Emi Yumoto,Shahanaz Parveen,Ishmael Mutanda,Masashi Inafuku,Hirosuke Oku
出处
期刊:Plant Biology [Wiley]
卷期号:24 (3): 492-501 被引量:3
标识
DOI:10.1111/plb.13386
摘要

Plant hormone signalling and the circadian clock have been implicated in the transcriptional control of isoprene biosynthesis. To gain more insight into the hormonal control of isoprene biosynthesis, the present study measured plant hormone concentrations in jasmonic acid (JA)-treated leaves of our previous model study, examined their relationship with gene expression of isoprene synthase (IspS) and hormone signalling transcription factors. Of the plant hormones, IAA and JA-Ile and their related transcription factors (MYC2 and SAUR21) were significantly correlated with IspS gene expression. Concentrations of cytokinins, isopentenyladenine (iP), trans-zeatin riboside (tZR) and cis-zeatin riboside (cZR), were similarly significantly correlated with IspS expression. However, there was no significant correlation between their related transcription factor (ARR-B) and IspS expression. The circadian clock-related gene PRR7, but not the transcription factor LHY, was highly correlated with IspS expression. These results suggest that the hormonal balance between JA-Ile and IAA plays a central role in transcriptional regulation of IspS through the transcription factors MYC2 and SAUR21, the early auxin responsive genes. The putative cis-acting elements for SAUR on the IspS promoter (TGTCNN and CATATG), in addition to the G-box for MYC2, support the above proposal. These results provide insightful information on the core components of plant hormone-related regulation of IspS under coordination with the circadian clock genes.
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