首页> 美国卫生研究院文献>The Journal of Biological Chemistry >OsTGAP1 a bZIP Transcription Factor Coordinately Regulates the Inductive Production of Diterpenoid Phytoalexins in Rice
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OsTGAP1 a bZIP Transcription Factor Coordinately Regulates the Inductive Production of Diterpenoid Phytoalexins in Rice

机译:OsTGAP1bZIP转录因子协调调节水稻中双萜类植物抗毒素的诱导生产

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摘要

Production of major diterpenoid phytoalexins, momilactones and phytocassanes, is induced in rice upon recognition of pathogenic invasion as plant defense-related compounds. We recently showed that biosynthetic genes for momilactones are clustered on rice chromosome 4 and co-expressed after elicitation, mimicking pathogen attack. Because genes for most metabolic pathways in plants are not organized in gene clusters, examination of the mechanism(s) regulating the expression of such clustered genes is needed. Here, we report a chitin oligosaccharide elicitor-inducible basic leucine zipper transcription factor, OsTGAP1, which is essential for momilactone biosynthesis and regulates the expression of the five genes in the cluster. The knock-out mutant for OsTGAP1 had almost no expression of the five clustered genes (OsCPS4, OsKSL4, CYP99A2, CYP99A3, and OsMAS) or production of momilactones upon elicitor treatment. Inductive expression of OsKSL7 for phytocassane biosynthesis was also largely affected in the ostgap1 mutant, although phytocassane accumulation still occurred. Conversely, OsTGAP1-overexpressing lines exhibited enhanced expression of the clustered genes and hyperaccumulation of momilactones in response to the elicitor. Furthermore, enhanced expression of OsKSL7 and hyperaccumulation of phytocassanes was also observed. We also found that OsTGAP1 overexpression can influence transcriptional up-regulation of OsDXS3 in the methylerythritol phosphate pathway, eventually leading to inductive production of diterpenoid phytoalexins. These results indicate that OsTGAP1 functions as a key regulator of the coordinated transcription of genes involved in inductive diterpenoid phytoalexin production in rice and mainly exerts an essential role on expression of the clustered genes for momilactone biosynthesis.
机译:水稻中的主要二萜类植物抗毒素,摩尼内酯和植物酪蛋白的产生在病原体入侵为植物防御相关化合物后被诱导。我们最近发现,妈咪内酯的生物合成基因聚集在水稻第4号染色体上,并在诱导后共表达,模仿病原体的侵袭。因为植物中大多数代谢途径的基因不是组织在基因簇中,所以需要检查调节此类簇状基因表达的机制。在这里,我们报告几丁质寡糖引发剂诱导的基本亮氨酸拉链转录因子,OsTGAP1,这是妈咪内酯生物合成所必需的,并调节簇中五个基因的表达。 OsTGAP1的敲除突变体几乎没有表达五个聚簇基因(OsCPS4,OsKSL4,CYP99A2,CYP99A3和OsMAS),或者在激发子处理后没有产生母乳内酯。 ostgap1突变体中,OsKSL7的诱导表达对于植物木薯生物合成也有很大影响,尽管仍然存在植物木薯烷的积累。相反,过表达OsTGAP1的品系表现出增强的簇状基因表达和响应激发子的妈咪内酯过度积累。此外,还观察到OsKSL7的表达增强和植物酪蛋白的过度积累。我们还发现,OsTGAP1的过表达可影响甲基赤藓糖醇磷酸途径中OsDXS3的转录上调,最终导致诱导产生二萜类植物抗毒素。这些结果表明,OsTGAP1充当水稻中诱导性二萜类植物抗毒素生产相关基因协调转录的关键调控因子,并且在妈咪内酯生物合成的簇状基因的表达中起着至关重要的作用。

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