<i>Salvia miltiorrhiza</i> Bunge root in the treatment of myocardial fibrosis: research progress and challenges. [PDF]
Li Q +9 more
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Endophytic <i>Aspergillus fijiensis</i> fungus J7 prevents disease and promotes growth in <i>Salvia miltiorrhiza</i>. [PDF]
Yang X +8 more
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Transcriptome- and Metabolome-Based Regulation of Growth, Development, and Bioactive Compounds in Salvia miltiorrhiza (Lamiaceae) Seedlings by Different Phosphorus Levels. [PDF]
Zuo K, Chen L, Li T, Liu S, Zhang C.
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A novel synergistic regulatory mechanism involving the MYB39-MYB111-bHLH51-TTG1 module in the phenolic and diterpenoid biosynthetic pathways of Salvia miltiorrhiza. [PDF]
Xing B +13 more
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Ecotype-specific phenolic acid accumulation and root softness in Salvia miltiorrhiza are driven by environmental and genetic factors. [PDF]
Yu H +13 more
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The Synergistic Effects of <i>Astragalus Mongholicus</i> and <i>Salvia Miltiorrhiza</i> on Coronary Heart Disease Identified by Network Pharmacology and Experiment [Retraction]. [PDF]
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Salvia miltiorrhiza in Anti-diabetic Angiopathy
Current Molecular Pharmacology, 2021Background:: Salvia miltiorrhiza, a traditional Chinese medicine, also named as Danshen in China, is widely used for treatment of cardiovascular disease. It demonstrates multiple biological functions, such as anti-oxidative stress, anti-inflammation and anti-thrombosis.
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2.4. SmMAPK3 regulates the production of phenolic acids in S. miltiorrhiza To determine whether SmMAPK3 facilitates the biosynthesis of phenolic acids in S. miltiorrhiza, plasmids that contain the SmMAPK3 full-length ORF or empty vector (under the control of the CaMV35S promoter) were used to generate the respective transgenic plantlet lines.
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