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AgMYB12,一种新型的 R2R3-MYB 转录因子,通过与芹菜中的 AgFNS 基因相互作用来调节芹黄素的生物合成。

AgMYB12, a novel R2R3-MYB transcription factor, regulates apigenin biosynthesis by interacting with the AgFNS gene in celery.

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Ministry of Agriculture and Rural Affairs Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in East China, College of Horticulture, Nanjing Agricultural University, 1 Weigang, Nanjing, 210095, China.

出版信息

Plant Cell Rep. 2022 Jan;41(1):139-151. doi: 10.1007/s00299-021-02792-4. Epub 2021 Oct 3.

Abstract

Overexpression of AgMYB12 in celery improved the accumulation of apigenin by interacting with the AgFNS gene. Celery is a common vegetable, and its essential characteristic is medicine food homology. A natural flavonoid and a major pharmacological component in celery, apigenin plays an important role in human health. In this study, we isolated a novel R2R3-MYB transcription factor that regulates apigenin accumulation from the celery cultivar 'Jinnan Shiqin' through yeast one-hybrid screening and designated it as AgMYB12. The AgMYB12 protein was located in the nucleus. It showed transcriptional activation activity and bound specifically to the promoter of AgFNS, a gene involved in apigenin biosynthesis. Phylogenetic tree analysis demonstrated that AgMYB12 belongs to the flavonoid branch. It contains two flavonoid-related motifs, SG7 and SG7-2, and shared a highly conserved R2R3 domain with flavonoid-related MYBs. The homologous overexpression of AgMYB12 induced the up-regulation of AgFNS gene expression and accumulation of apigenin and luteolin in celery. Additionally, the expression levels of apigenin biosynthesis-related genes, including AgPAL, AgCHI, AgCHS, Ag4CL, and AgC4H, increased in transgenic celery plants. These results indicated that AgMYB12 acted as a positive regulator of apigenin biosynthesis and activated the expression of AgFNS gene. The current study provides new information about the regulation mechanism of apigenin metabolism in celery and offers a strategy for cultivating the plants with high apigenin content.

摘要

芹菜中 AgMYB12 的过表达通过与 AgFNS 基因相互作用,提高了芹菜素的积累。芹菜是一种常见的蔬菜,其主要特点是药食同源。芹菜中的一种天然类黄酮和主要的药理成分芹菜素,在人类健康中发挥着重要作用。本研究通过酵母单杂交筛选,从芹菜品种‘津南实芹’中分离到一个调控芹菜素积累的新型 R2R3-MYB 转录因子,命名为 AgMYB12。AgMYB12 蛋白定位于细胞核,具有转录激活活性,能特异性结合参与芹菜素生物合成的 AgFNS 基因启动子。系统进化树分析表明,AgMYB12 属于黄酮类分支,含有两个黄酮类相关基序 SG7 和 SG7-2,与黄酮类相关 MYB 具有高度保守的 R2R3 结构域。AgMYB12 的同源过表达诱导了 AgFNS 基因表达和芹菜素、木犀草素的积累。此外,在转基因芹菜植株中,与芹菜素生物合成相关的基因,如 AgPAL、AgCHI、AgCHS、Ag4CL 和 AgC4H 的表达水平也增加。这些结果表明,AgMYB12 作为芹菜素生物合成的正调控因子,激活了 AgFNS 基因的表达。本研究为芹菜中芹菜素代谢的调控机制提供了新信息,并为培育高含量芹菜素的植物提供了一种策略。

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