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冷诱导人参皂苷积累与多年生西洋参生长发育过程中DNA甲基化及相关基因表达的变化有关。

Cold-induced ginsenosides accumulation is associated with the alteration in DNA methylation and relative gene expression in perennial American ginseng ( L.) along with its plant growth and development process.

作者信息

Hao Mengzhen, Zhou Yuhang, Zhou Jinhui, Zhang Min, Yan Kangjiao, Jiang Sheng, Wang Wenshui, Peng Xiaoping, Zhou San

机构信息

Department of Pharmcognosy, School of Pharmacy, Qingdao University, Qingdao, China.

Faculty of Medicine, Tottori University, Tottori, Japan.

出版信息

J Ginseng Res. 2020 Sep;44(5):747-755. doi: 10.1016/j.jgr.2019.06.006. Epub 2019 Jul 2.

Abstract

BACKGROUND

Ginsenosides accumulation responses to temperature are critical to quality formation in cold-dependent American ginseng. However, the studies on cold requirement mechanism relevant to ginsenosides have been limited in this species.

METHODS

Two experiments were carried out: one was a multivariate linear regression analysis between the ginsenosides accumulation and the environmental conditions of American ginseng from different sites of China and the other was a synchronous determination of ginsenosides accumulation, overall DNA methylation, and relative gene expression in different tissues during different developmental stages of American ginseng after experiencing different cold exposure duration treatments.

RESULTS

Results showed that the variation of the contents as well as the yields of total and individual ginsenosides Rg1, Re, and Rb1 in the roots were closely associated with environmental temperature conditions which implied that the cold environment plays a decisive role in the ginsenoside accumulation of American ginseng. Further results showed that there is a cyclically reversible dynamism between methylation and demethylation of DNA in the perennial American ginseng in response to temperature seasonality. And sufficient cold exposure duration in winter caused sufficient DNA demethylation in tender leaves in early spring and then accompanied the high expression of flowering gene PqFT in flowering stages and ginsenosides biosynthesis gene PqDDS in green berry stages successively, and finally, maximum ginsenosides accumulation occurred in the roots of American ginseng.

CONCLUSION

We, therefore, hypothesized that cold-induced DNA methylation changes might regulate relative gene expression involving both plant development and plant secondary metabolites in such cold-dependent perennial plant species.

摘要

背景

人参皂苷积累对温度的响应对于依赖寒冷环境的西洋参品质形成至关重要。然而,关于西洋参中与人参皂苷相关的冷需求机制的研究一直有限。

方法

进行了两项实验:一项是对来自中国不同产地的西洋参的人参皂苷积累与环境条件之间进行多元线性回归分析;另一项是在西洋参经历不同冷暴露持续时间处理后的不同发育阶段,同步测定其不同组织中的人参皂苷积累、整体DNA甲基化和相对基因表达。

结果

结果表明,根中总人参皂苷及人参皂苷Rg1、Re和Rb1的含量及产量变化与环境温度条件密切相关,这表明寒冷环境对西洋参的人参皂苷积累起决定性作用。进一步结果表明,多年生西洋参中DNA的甲基化和去甲基化之间存在响应温度季节性的周期性可逆动态变化。冬季充足的冷暴露持续时间导致早春嫩叶中DNA充分去甲基化,随后依次伴随着开花期开花基因PqFT和绿果期人参皂苷生物合成基因PqDDS的高表达,最终西洋参根中人参皂苷积累达到最大值。

结论

因此,我们推测在这种依赖寒冷环境的多年生植物物种中,冷诱导的DNA甲基化变化可能调节涉及植物发育和植物次生代谢产物的相关基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec64/7471128/cd5a521bc07d/gr1.jpg

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