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利用综合代谢物谱和转录组分析研究假苯酞生物合成途径中的酶

Investigation of Enzymes in the Phthalide Biosynthetic Pathway in Using Integrative Metabolite Profiles and Transcriptome Analysis.

作者信息

Feng Wei-Meng, Liu Pei, Yan Hui, Yu Guang, Zhang Sen, Jiang Shu, Shang Er-Xin, Qian Da-Wei, Duan Jin-Ao

机构信息

Jiangsu Key Laboratory for High Technology Research of TCM Formulae, Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, National and Local Collaborative Engineering Center of Chinese Medicinal Resources Industrialization and Formulae Innovative Medicine, Nanjing University of Chinese Medicine, Nanjing, China.

出版信息

Front Plant Sci. 2022 Jul 1;13:928760. doi: 10.3389/fpls.2022.928760. eCollection 2022.

Abstract

The roots of (Oliv.) Diels are well known for their efficacy in promoting blood circulation. Although many studies have indicated that phthalides are the main chemical components responsible for the pharmacological properties of the phthalide biosynthetic pathway and enzymes that transform different phthalides are still poorly understood. We identified 108 potential candidate isoforms for phthalide accumulation using transcriptome and metabolite profile analyses. Then, six enzymes, including phospho-2-dehydro-3-deoxyheptonate aldolase 2, shikimate dehydrogenase, primary amine oxidase, polyphenol oxidase, tyrosine decarboxylase, and shikimate O-hydroxycinnamoyl transferase, were identified and proven to be involved in phthalide accumulation by heterologously expressing these proteins in . We proposed a possible mechanism underlying phthalide transformation and biosynthetic pathways in based on our findings. The results of our study can provide valuable information for understanding the mechanisms underlying phthalide accumulation and transformation and enable further development of quality control during the cultivation of .

摘要

(Oliv.)Diels的根因其促进血液循环的功效而闻名。尽管许多研究表明苯酞是负责该药物特性的主要化学成分,但苯酞生物合成途径以及转化不同苯酞的酶仍知之甚少。我们通过转录组和代谢物谱分析确定了108个潜在的苯酞积累候选异构体。然后,通过在……中异源表达这些蛋白质,鉴定并证实了六种酶,包括磷酸-2-脱氢-3-脱氧庚酮酸醛缩酶2、莽草酸脱氢酶、伯胺氧化酶、多酚氧化酶、酪氨酸脱羧酶和莽草酸O-羟基肉桂酰转移酶参与苯酞积累。基于我们的研究结果,我们提出了……中苯酞转化和生物合成途径的可能机制。我们的研究结果可为理解苯酞积累和转化的机制提供有价值的信息,并有助于在……种植过程中进一步开展质量控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67b9/9286521/4928fe2fd632/fpls-13-928760-g001.jpg

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