MhMYB1 和 MhMYB2 转录因子对 Mentha haplocalyx Briq 的 l-menthol 化学型单萜生物合成途径的影响。

IF 3.6 3区 生物学 Q1 PLANT SCIENCES
Planta Pub Date : 2024-05-20 DOI:10.1007/s00425-024-04441-y
Xin An, Yangzhen Liao, Yifan Yu, Jiahe Fan, Jingqiong Wan, Yuan Wei, Zhen Ouyang
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引用次数: 0

摘要

主要结论转录因子 MhMYB1 和 MhMYB2 与 Mentha haplocalyx Briq 的 l-menthol 化学型中的单萜生物合成途径相关,这可能会影响 ( -)-menthol 和 ( -)-menthone 的含量。Mentha haplocalyx Briq.是一种具有传统药用和食用用途的植物,以其丰富的精油含量而闻名。薄荷精油的不同功能活性和芳香味道来自于不同的化学类型。虽然人们对薄荷中主要单萜烯的生物合成途径有了很好的了解,但对不同化学型的调控机制仍缺乏充分的探讨。在这项研究中,我们发现并克隆了 M. haplocalyx MYB 家族的两个转录因子基因,即我们研究小组之前发现的 MhMYB1(PP236792)和 MhMYB2(PP236793)。生物信息学分析表明,MhMYB1 具有两个保守的 MYB 结构域,而 MhMYB2 则含有一个保守的 SANT 结构域。酵母单杂交(Y1H)分析结果表明,MhMYB1和MhMYB2都与MhMD和MhPR的启动子区域相互作用,而MhMD和MhPR是单萜生物合成途径中的关键酶。随后,病毒诱导的基因沉默(VIGS)导致 MhMYB1 和 MhMYB2 的启动子数量显著减少(P<0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of MhMYB1 and MhMYB2 transcription factors on the monoterpenoid biosynthesis pathway in l-menthol chemotype of Mentha haplocalyx Briq.

Effects of MhMYB1 and MhMYB2 transcription factors on the monoterpenoid biosynthesis pathway in l-menthol chemotype of Mentha haplocalyx Briq.

Main conclusion: Transcription factors MhMYB1 and MhMYB2 correlate with monoterpenoid biosynthesis pathway in l-menthol chemotype of Mentha haplocalyx Briq, which could affect the contents of ( -)-menthol and ( -)-menthone. Mentha haplocalyx Briq., a plant with traditional medicinal and edible uses, is renowned for its rich essential oil content. The distinct functional activities and aromatic flavors of mint essential oils arise from various chemotypes. While the biosynthetic pathways of the main monoterpenes in mint are well understood, the regulatory mechanisms governing different chemotypes remain inadequately explored. In this investigation, we identified and cloned two transcription factor genes from the M. haplocalyx MYB family, namely MhMYB1 (PP236792) and MhMYB2 (PP236793), previously identified by our research group. Bioinformatics analysis revealed that MhMYB1 possesses two conserved MYB domains, while MhMYB2 contains a conserved SANT domain. Yeast one-hybrid (Y1H) analysis results demonstrated that both MhMYB1 and MhMYB2 interacted with the promoter regions of MhMD and MhPR, critical enzymes in the monoterpenoid biosynthesis pathway of M. haplocalyx. Subsequent virus-induced gene silencing (VIGS) of MhMYB1 and MhMYB2 led to a significant reduction (P < 0.01) in the relative expression levels of MhMD and MhPR genes in the VIGS groups of M. haplocalyx. In addition, there was a noteworthy decrease (P < 0.05) in the contents of ( -)-menthol and ( -)-menthone in the essential oil of M. haplocalyx. These findings suggest that MhMYB1 and MhMYB2 transcription factors play a positive regulatory role in ( -)-menthol biosynthesis, consequently influencing the essential oil composition in the l-menthol chemotype of M. haplocalyx. This study serves as a pivotal foundation for unraveling the regulatory mechanisms governing monoterpenoid biosynthesis in different chemotypes of M. haplocalyx.

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来源期刊
Planta
Planta 生物-植物科学
CiteScore
7.20
自引率
2.30%
发文量
217
审稿时长
2.3 months
期刊介绍: Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, new methods, physiology, plant-microbe interactions, structural biology, and systems biology.
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