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Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots

Salvia miltiorrhiza Bunge is an herb rich in bioactive tanshinone and salvianolic acid compounds. It is primarily used as an effective medicine for treating cardiovascular and cerebrovascular diseases. Liposoluble tanshinones and water-soluble phenolic acids are a series of terpenoids and phenolic c...

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Autores principales: Hao, Xiaolong, Pu, Zhongqiang, Cao, Gang, You, Dawei, Zhou, Yang, Deng, Changping, Shi, Min, Nile, Shivraj Hariram, Wang, Yao, Zhou, Wei, Kai, Guoyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7016019/
https://www.ncbi.nlm.nih.gov/pubmed/32071787
http://dx.doi.org/10.1016/j.jare.2020.01.012
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author Hao, Xiaolong
Pu, Zhongqiang
Cao, Gang
You, Dawei
Zhou, Yang
Deng, Changping
Shi, Min
Nile, Shivraj Hariram
Wang, Yao
Zhou, Wei
Kai, Guoyin
author_facet Hao, Xiaolong
Pu, Zhongqiang
Cao, Gang
You, Dawei
Zhou, Yang
Deng, Changping
Shi, Min
Nile, Shivraj Hariram
Wang, Yao
Zhou, Wei
Kai, Guoyin
author_sort Hao, Xiaolong
collection PubMed
description Salvia miltiorrhiza Bunge is an herb rich in bioactive tanshinone and salvianolic acid compounds. It is primarily used as an effective medicine for treating cardiovascular and cerebrovascular diseases. Liposoluble tanshinones and water-soluble phenolic acids are a series of terpenoids and phenolic compounds, respectively. However, the regulation mechanism for the simultaneous promotion of tanshinone and salvianolic acid biosynthesis remains unclear. This study identified a R2R3-MYB subgroup 20 transcription factor (TF), SmMYB98, which was predominantly expressed in S. miltiorrhiza lateral roots. The accumulation of major bioactive metabolites, tanshinones, and salvianolic acids, was improved in SmMYB98 overexpression (OE) hairy root lines, but reduced in SmMYB98 knockout (KO) lines. The qRT-PCR analysis revealed that the transcriptional expression levels of tanshinone and salvianolic acid biosynthesis genes were upregulated by SmMYB98-OE and downregulated by SmMYB98-KO. Dual-Luciferase (Dual-LUC) assays demonstrated that SmMYB98 significantly activated the transcription of SmGGPPS1, SmPAL1, and SmRAS1. These results suggest that SmMYB98-OE can promote tanshinone and salvianolic acid production. The present findings illustrate the exploitation of R2R3-MYB in terpenoid and phenolic biosynthesis, as well as provide a feasible strategy for improving tanshinone and salvianolic acid contents by MYB proteins in S. miltiorrhiza.
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spelling pubmed-70160192020-02-18 Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots Hao, Xiaolong Pu, Zhongqiang Cao, Gang You, Dawei Zhou, Yang Deng, Changping Shi, Min Nile, Shivraj Hariram Wang, Yao Zhou, Wei Kai, Guoyin J Adv Res Article Salvia miltiorrhiza Bunge is an herb rich in bioactive tanshinone and salvianolic acid compounds. It is primarily used as an effective medicine for treating cardiovascular and cerebrovascular diseases. Liposoluble tanshinones and water-soluble phenolic acids are a series of terpenoids and phenolic compounds, respectively. However, the regulation mechanism for the simultaneous promotion of tanshinone and salvianolic acid biosynthesis remains unclear. This study identified a R2R3-MYB subgroup 20 transcription factor (TF), SmMYB98, which was predominantly expressed in S. miltiorrhiza lateral roots. The accumulation of major bioactive metabolites, tanshinones, and salvianolic acids, was improved in SmMYB98 overexpression (OE) hairy root lines, but reduced in SmMYB98 knockout (KO) lines. The qRT-PCR analysis revealed that the transcriptional expression levels of tanshinone and salvianolic acid biosynthesis genes were upregulated by SmMYB98-OE and downregulated by SmMYB98-KO. Dual-Luciferase (Dual-LUC) assays demonstrated that SmMYB98 significantly activated the transcription of SmGGPPS1, SmPAL1, and SmRAS1. These results suggest that SmMYB98-OE can promote tanshinone and salvianolic acid production. The present findings illustrate the exploitation of R2R3-MYB in terpenoid and phenolic biosynthesis, as well as provide a feasible strategy for improving tanshinone and salvianolic acid contents by MYB proteins in S. miltiorrhiza. Elsevier 2020-01-25 /pmc/articles/PMC7016019/ /pubmed/32071787 http://dx.doi.org/10.1016/j.jare.2020.01.012 Text en © 2020 Production and hosting by Elsevier B.V. on behalf of Cairo University. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Hao, Xiaolong
Pu, Zhongqiang
Cao, Gang
You, Dawei
Zhou, Yang
Deng, Changping
Shi, Min
Nile, Shivraj Hariram
Wang, Yao
Zhou, Wei
Kai, Guoyin
Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title_full Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title_fullStr Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title_full_unstemmed Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title_short Tanshinone and salvianolic acid biosynthesis are regulated by SmMYB98 in Salvia miltiorrhiza hairy roots
title_sort tanshinone and salvianolic acid biosynthesis are regulated by smmyb98 in salvia miltiorrhiza hairy roots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7016019/
https://www.ncbi.nlm.nih.gov/pubmed/32071787
http://dx.doi.org/10.1016/j.jare.2020.01.012
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